% !TeX encoding = UTF-8
% !TeX spellcheck = en_GB
% !BIB TS-program = biber
%
% Scientific Data, submission guidelines: https://www.nature.com/sdata/publish/submission-guidelines#sec-1
%
% Paper outline:
%   * Title page (9656)
%   * Abstract (9672)
%   1 Background & Summary (9682)
%   2 Methods (10193)
%   3 Data Records (11821)
%   4 Technical Validation (12067)
%   5 Usage Notes (12329)
%   6 Code Availability (12459)
%   * Author Contributions (12506)
%   * Competing Interests (12513)
%   * Acknowledgements (12518)
%   * References (12524)
%
%###############################################################################
% File contents
%
% Bibliography
\begin{filecontents}{article.biblio.bib}
	
	% Abrams law
	@book{conmatabramslaw,
		title        = {Construction Materials: Their Nature and Behaviour},
		author       = {Illston, J.M. AND Domone, P.},
		isbn         = {9780419258605},
		lccn         = {2001020094},
		edition      = {3},
		%url          = {https://books.google.at/books?id=5kVrpqWwsvcC},
		year         = {2001},
		publisher    = {Taylor \& Francis},
	}
	
	% generalization of Abrams law
	@article{NAGARAJ1996933,
		title        = {Generalization of Abrams' law},
		journal      = {Cement and Concrete Research},
		volume       = {26},
		number       = {6},
		pages        = {933-942},
		year         = {1996},
		issn         = {0008-8846},
		doi          = {https://doi.org/10.1016/0008-8846(96)00065-8},
		%url          = {https://www.sciencedirect.com/science/article/pii/0008884696000658},
		url          = {https://doi.org/10.1016/0008-8846(96)00065-8},
		author       = {Nagaraj, T.S. AND Banu, Zahida},
	}
	
	% effect of cement strength class on the generalized law of Abrams
	@article{KargariCemStrength,
		author       = {Kargari, Amirhossein AND Eskandari-Naddaf, Hamid AND Kazemi, Ramin},
		title        = {Effect of cement strength class on the generalization of Abrams' law},
		journal      = {Structural Concrete},
		volume       = {20},
		number       = {1},
		pages        = {493-505},
		doi          = {https://doi.org/10.1002/suco.201700275},
		%eprint      = {https://onlinelibrary.wiley.com/doi/pdf/10.1002/suco.201700275},
		url          = {https://doi.org/10.1002/suco.201700275},
		year         = {2019},
	}
	
	% cement reaction of cement paste
	@article{IppeiMaruyama2014,
		title        = {Cement Reaction and Resultant Physical Properties of Cement Paste},
		author       = {Maruyama, Ippei AND Igarashi, Go},
		journal      = {Journal of Advanced Concrete Technology},
		volume       = {12},
		number       = {6},
		pages        = {200-213},
		year         = {2014},
		doi          = {https://doi.org/10.3151/jact.12.200},
		url          = {https://doi.org/10.3151/jact.12.200},
	}
	
	% determining the water–cement ratio
	@article{WONG2009957,
		title        = {Determining the water–cement ratio, cement content, water content and degree of hydration of hardened cement paste: Method development and validation on paste samples},
		journal      = {Cement and Concrete Research},
		volume       = {39},
		number       = {10},
		pages        = {957-965},
		year         = {2009},
		issn         = {0008-8846},
		doi          = {https://doi.org/10.1016/j.cemconres.2009.06.013},
		%url          = {https://www.sciencedirect.com/science/article/pii/S000888460900146X},
		url          = {https://doi.org/10.1016/j.cemconres.2009.06.013},
		author       = {Wong, H.S. AND Buenfeld, N.R.},
	}
	
	% bleeding
	@article{JI2019105866,
		title        = {The microstructure development during bleeding of cement paste: An NMR study},
		journal      = {Cement and Concrete Research},
		volume       = {125},
		pages        = {105866},
		year         = {2019},
		issn         = {0008-8846},
		doi          = {https://doi.org/10.1016/j.cemconres.2019.105866},
		%url          = {https://www.sciencedirect.com/science/article/pii/S0008884618310469},
		url          = {https://doi.org/10.1016/j.cemconres.2019.105866},
		author       = {Ji, Yanliang AND Pel, Leo AND Sun, Zhenping},
	}
	
	% workability of cement mortars
	@article{HaachVladimirG.2011Ioag,
		issn         = {0950-0618},
		pages        = {2980--2987},
		volume       = {25},
		publisher    = {Elsevier Ltd},
		number       = {6},
		year         = {2011},
		title        = {Influence of aggregates grading and water/cement ratio in workability and hardened properties of mortars},
		copyright    = {2010 Elsevier Ltd},
		language     = {eng},
		author       = {Haach, Vladimir G. AND Vasconcelos, Graça AND Lourenço, Paulo B.},
	}
	
	% workability of concrete
	@book{tattersall1991workability,
		title        = {Workability and quality control of concrete},
		author       = {Tattersall, {Geoffrey Howarth}},
		year         = {1991},
		publisher    = {CRC Press},
	}
	
	% piezoelectric effect
	@article{piezoeffectRuediger2021,
		author       = {Ballas, Rüdiger},
		year         = {2021},
		month        = {01},
		pages        = {12},
		title        = {The Piezoelectric Effect \textendash{} an Indispensable Solid State Effect for Contemporary Actuator and Sensor Technologies},
		volume       = {1775},
		journal      = {Journal of Physics: Conference Series},
		doi          = {https://doi.org/10.1088/1742-6596/1775/1/012012},
		url          = {https://doi.org/10.1088/1742-6596/1775/1/012012},
	}
	
	% UPV tests, review of the state of the art
	@article{LIM201850,
		title        = {Wave propagation based monitoring of concrete curing using piezoelectric materials: Review and path forward},
		journal      = {NDT \& E International},
		volume       = {99},
		pages        = {50-63},
		year         = {2018},
		issn         = {0963-8695},
		doi          = {https://doi.org/10.1016/j.ndteint.2018.06.002},
		%url          = {https://www.sciencedirect.com/science/article/pii/S0963869517306527},
		url          = {https://doi.org/10.1016/j.ndteint.2018.06.002},
		author       = {Yee Yan Lim and Scott T. Smith and Chee Kiong Soh},
	}
	
	@book{acousticwaves2024,
		author       = {Yoshida, Sanichiro},
		title        = {Fundamentals of Acoustic Waves and Applications},
		date         = {2024-05-01},
		edition      = {1},
		series       = {Synthesis Lectures on Wave Phenomena in the Physical Sciences},
		publisher    = {Springer Cham},
		isbn         = {978-3-031-48200-7},
		pages        = {65-85,87-121},
		pagetotal    = {170},
		doi          = {https://doi.org/10.1007/978-3-031-48200-7},
		url          = {https://doi.org/10.1007/978-3-031-48200-7},
	}
	
	% thermocouples
	@article{thermocouplesroeser1940,
		author       = {Roeser, {Wm. F.}},
		title        = {Thermoelectric Thermometry},
		journal      = {Journal of Applied Physics},
		volume       = {11},
		number       = {6},
		pages        = {388-407},
		year         = {1940},
		month        = {06},
		issn         = {0021-8979},
		doi          = {https://doi.org/10.1063/1.1712788},
		url          = {https://doi.org/10.1063/1.1712788},
	}
	
	@article{freshcon,
		author       = {Ruck, Hans-Jürgen AND Große, {Christian U.} AND Reinhardt, Hans-Wolf},
		journaltitle = {NDT.net},
		year         = {2021},
		date         = {2021-05-21},
		title        = {Automatisierung der Ultraschallmessung von Frischbeton},
		url          = {https://www.ndt.net/article/dgzfp01/papers/p05/p05.htm},
		%urldate     = {2024-11-30},
	}
	
	@article{confpaper1,
		author       = {Harden, Jakob},
		title        = {{Ultraschall-Puls-Transmissionsverfahren: Automatisierte Drift-Erkennung in Signalreihen von Zementleimen im frühen Stadium der Hydratation}},
		year         = {2023},
		publisher    = {Graz University of Technology},
		month        = {5},
		doi          = {https://doi.org/10.3217/e7vj3-fag18},
		url          = {https://doi.org/10.3217/e7vj3-fag18},
		%urldate      = {2025-02-11},
	}
	
	@article{confpaper2,
		author       = {Harden, Jakob},
		title        = {{Ultrasonic through-transmission method: Characterization and detection of the electromagnetic disturbances caused by pulse excitation observed in combined compression and shear wave measurements of cement paste}},
		year         = {2023},
		publisher    = {Graz University of Technology},
		month        = {7},
		doi          = {https://doi.org/10.3217/eh2ek-56e78},
		url          = {https://doi.org/10.3217/eh2ek-56e78},
		%urldate      = {2025-02-11},
	}
	
	@book{garett2020,
		series       = {Graduate Texts in Physics},
		isbn         = {9783030447878},
		year         = {2020},
		title        = {Understanding Acoustics: An Experimentalist’s View of Sound and Vibration},
		edition      = {2},
		author       = {Garrett, Steven L},
		url          = {https://link.springer.com/book/10.1007/978-3-030-44787-8},
		urldate      = {2020},
	}
	
	%-------------------------------------------------------------------------------------------------------------------
	% Datasets
	
	@online{datacem,
		author       = {Harden, Jakob},
		title        = {{Ultrasonic Pulse Transmission Tests: Datasets \textendash{} Test Series 1, Cement Paste at Early Stages}},
		month        = {7},
		year         = {2023},
		%organization = {TU Graz Repository},
		%publisher    = {TU Graz Repository},
		note         = {TU Graz Repository},
		version      = {1.0},
		doi          = {https://doi.org/10.3217/bhs4g-m3z76},
		url          = {https://doi.org/10.3217/bhs4g-m3z76},
		urldate      = {2023},
	}
	
	@online{dataair,
		author       = {Harden, Jakob},
		title        = {{Ultrasonic Pulse Transmission Tests: Datasets \textendash{} Test Series 5, Reference Tests on Air}},
		month        = {7},
		year         = {2023},
		%organization = {TU Graz Repository},
		note         = {TU Graz Repository},
		version      = {1.0},
		doi          = {https://doi.org/10.3217/bjkrj-pg829},
		url          = {https://doi.org/10.3217/bjkrj-pg829},
		urldate      = {2023},
	}
	
	@online{datawater,
		author       = {Harden, Jakob},
		title        = {{Ultrasonic Pulse Transmission Tests: Datasets \textendash{} Test Series 6, Reference Tests on Water}},
		month        = {7},
		year         = {2023},
		%organization = {TU Graz Repository},
		note         = {TU Graz Repository},
		version      = {1.0},
		doi          = {https://doi.org/10.3217/hn7we-q7z09},
		url          = {https://doi.org/10.3217/hn7we-q7z09},
		urldate      = {2023},
	}
	
	@online{dataalucyl,
		author       = {Harden, Jakob},
		title        = {{Ultrasonic Pulse Transmission Tests: Datasets \textendash{} Test Series 7, Reference Tests on Aluminium Cylinder}},
		month        = {2},
		year         = {2025},
		%organization = {TU Graz Repository},
		note         = {TU Graz Repository},
		version      = {1.1},
		doi          = {https://doi.org/10.3217/w3mb5-1wx17},
		url          = {https://doi.org/10.3217/w3mb5-1wx17},
		urldate      = {2025},
	}
	
	%-------------------------------------------------------------------------------------------------------------------
	% Software
	
	% analysis code for this article
	@online{analysiscode,
		author       = {Harden, Jakob},
		title        = {Source code for: Experimental study on cement paste using the ultrasonic pulse transmission method},
		month        = {2},
		year         = {2024},
		version      = {1.0.0},
		note         = {TU Graz Repository},
		doi          = {https://doi.org/10.3217/xmrmb-5ap42},
		url          = {https://doi.org/10.3217/xmrmb-5ap42},
		urldate      = {2024},
	}
	
	@online{dscompv1.2,
		author       = {Harden, Jakob},
		title        = {{Ultrasonic Pulse Transmission Tests: Data set compiler}},
		month        = {2},
		year         = {2025},
		version      = {1.2},
		note         = {TU Graz Repository},
		doi          = {https://doi.org/10.3217/bcydt-6ta35},
		url          = {https://doi.org/10.3217/bcydt-6ta35},
		urldate      = {2025},
	}
	
	@online{dsviewerv1.0,
		author       = {Harden, Jakob},
		title        = {{Ultrasonic Pulse Transmission Tests: Dataset Viewer}},
		month        = {8},
		year         = {2023},
		version      = {1.0},
		note         = {TU Graz Repository},
		doi          = {https://doi.org/10.3217/c1ccn-8m982},
		url          = {https://doi.org/10.3217/c1ccn-8m982},
		urldate      = {2023},
	}
	
	@online{dsexporterv1.1,
		author       = {Harden, Jakob},
		title        = {{Ultrasonic Pulse Transmission Tests: Dataset Exporter}},
		month        = {12},
		year         = {2023},
		version      = {1.1},
		note         = {TU Graz Repository},
		doi          = {https://doi.org/10.3217/d3p6m-w7d64},
		url          = {https://doi.org/10.3217/d3p6m-w7d64},
		urldate      = {2023},
	}
	
	@online{debian,
		author       = {Debian},
		title        = {Debian \textendash{} The universal operating system},
		year         = {2023},
		url          = {https://www.debian.org/index.en.html},
		urldate      = {2023},
	}
	
	@online{tar,
		author       = {{Free Software Foundation, Inc}},
		title        = {tar(1) \textendash{} Linux man page},
		year         = {2010},
		url          = {https://linux.die.net/man/1/tar},
		urldate      = {2010},
	}
	
	@online{bash,
		author       = {{Free Software Foundation, Inc}},
		title        = {bash(1) \textendash{} Linux man page},
		year         = {2009},
		url          = {https://linux.die.net/man/1/bash},
		urldate      = {2009},
	}
	
	@online{gzip,
		author       = {{Free Software Foundation, Inc}},
		title        = {GNU Gzip},
		year         = {2020},
		url          = {https://www.gnu.org/software/gzip/},
		urldate      = {2020},
	}
	
	@online{7zip,
		author       = {Pavlov, Igor},
		title        = {7-zip download},
		year         = {2024},
		url          = {https://www.7-zip.org/download.html},
		urldate      = {2024},
	}
	
	@online{sha256,
		author       = {{Free Software Foundation, Inc}},
		title        = {sha256sum(1) \textendash{} Linux man page},
		year         = {2010},
		url          = {https://linux.die.net/man/1/sha256sum},
		urldate      = {2010},
	}
	
	@online{ffmpeg,
		author       = {ffmpeg.org},
		title        = {FFmpeg \textendash{} A complete, cross-platform solution to record, convert and stream audio and video},
		year         = {2024},
		url          = {https://www.ffmpeg.org/},
		urldate      = {2024},
	}
	
	@online{oct620,
		author       = {Eaton, {John W.}},
		title        = {GNU Octave},
		year         = {2021},
		version      = {6.2.0},
		url          = {https://octave.org/news/release/2021/02/20/octave-6.2.0-released.html},
		urldate      = {2021},
	}
	
	@online{matlab,
		author       = {MathWorks},
		title        = {MatLAB \textendash{} Math, Graphics, Programming},
		year         = {2024},
		url          = {https://mathworks.com/products/matlab.html},
		urldate      = {2024},
	}
	
	@online{libreoffice,
		author       = {{LibreOffice \textendash{} The Document Foundation}},
		title        = {LibreOffice},
		year         = {2020},
		version      = {7.0.4.2},
		url          = {https://downloadarchive.documentfoundation.org/libreoffice/old/7.0.4.2/},
		urldate      = {2020},
	}
	
	%-------------------------------------------------------------------------------------------------------------------
	% Online material
	
	% Eurocode 2, compressive strength
	@online{eurocode2,
		author      = {EurocodeApplied.com},
		title       = {Table of concrete design properties according to Eurocode 2 (EN1992-1-1)},
		year        = {2024},
		url         = {https://eurocodeapplied.com/design/en1992/concrete-design-properties},
		urldate     = {2024},
	}
	
	%The Engineering ToolBox (2003). Air - Speed of Sound vs. Temperature. [online] Available at: https://www.engineeringtoolbox.com/air-speed-sound-d_603.html [Accessed Day Month Year].
	@online{etoolboxair,
		author      = {{The Engineering ToolBox}},
		title       = {Air \textendash{} Speed of Sound vs. Temperature},
		year        = {2003},
		url         = {https://www.engineeringtoolbox.com/air-speed-sound-d_603.html},
		urldate     = {2003},
	}
	
	%The Engineering ToolBox (2004). Water - Speed of Sound vs. Temperature. [online] Available at: https://www.engineeringtoolbox.com/sound-speed-water-d_598.html [Accessed Day Month Year].
	@online{etoolboxwater,
		author      = {{The Engineering ToolBox}},
		title       = {Water \textendash{} Speed of Sound vs. Temperature},
		year        = {2004},
		url         = {https://www.engineeringtoolbox.com/sound-speed-water-d_598.html},
		urldate     = {2004},
	}
	
	%The Engineering ToolBox (2004). Solids and Metals - Speed of Sound. [online] Available at: https://www.engineeringtoolbox.com/sound-speed-solids-d_713.html [Accessed Day Month Year].
	@online{etoolboxalualloys,
		author      = {{The Engineering ToolBox}},
		title       = {Aluminum Alloys \textendash{} Mechanical Properties},
		year        = {2008},
		url         = {https://www.engineeringtoolbox.com/properties-aluminum-pipe-d_1340.html},
		urldate     = {2008},
	}
	
	@online{smartmote,
		author      = {Smartmote},
		title       = {Smartmote \textendash{} FreshCon},
		url         = {http://www.smartmote.de/joomla/de/produkte/~ultraschall/9-produkte/19-neptun-webservices-5},
		urldate     = {2025},
	}
	
	@online{freshcon400,
		author      = {{Smartmote} and {Universität Stuttgart}},
		title       = {FreshCon-Duo 4.00 User Manual},
		date        = {2012-09-12},
		url         = {https://smartmote.de/joomla/images/PDF/Anleitung-FreshCon-V4-_0.pdf},
		urldate     = {2012},
	}
	
	@online{voez,
		author      = {{Vereinigung der österreichischen Zemetindustrie - VÖZ}},
		title       = {Zementtype},
		url         = {https://www.zement.at/der-baustoff/zement/zementtype},
		urldate     = {2025},
	}
	
	@online{octstruct,
		author      = {docs.gnuoctave.org},
		title       = {GNU Octave Documentation, 6.1 Structures},
		year        = {2021},
		version     = {6.2.0},
		url         = {https://docs.octave.org/v6.2.0/Structures.html},
		urldate     = {2021},
	}
	
	@online{repotug,
		title       = {{re3data.org: TU Graz Repository; editing status 2024-02-13; re3data.org \textendash{} Registry of Research Data Repositories}},
		date        = {2024-02-13},
		url         = {http://doi.org/10.17616/R31NJMYL},
		urldate     = {2024},
	}
	
	@online{licmit,
		author      = {{Massachusetts Institute of Technology}},
		title       = {The MIT License, Version N/A, SPDX short identifier: MIT},
		url         = {https://opensource.org/license/mit/},
		urldate     = {2025},
	}
	
	@online{licccby4,
		author      = {creativecommons.org},
		title       = {Creative Commons \textendash{} Attribution 4.0 International, SPDX short identifier: CC-BY-4.0},
		url         = {https://creativecommons.org/licenses/by/4.0/legalcode},
		urldate     = {2025},
	}
	
	@online{evidenttransducer,
		author      = {EVIDENT},
		title       = {Contact Transducers},
		url         = {https://www.olympus-ims.com/en/ultrasonic-transducers/contact-transducers/#!cms[focus]=cmsContent10862},
		urldate     = {2025},
	}
	
	% device d10, picoscope
	@online{picoscope4262,
		author      = {picoScope},
		title       = {PicoScope 4262 Specifications},
		date        = {2023},
		url         = {https://www.picotech.com/oscilloscope/4262/picoscope-4262-specifications},
		urldate     = {2023},
	}
	
	% device d11-1, National Instruments, cDAQ-9171
	@online{nicdaq9171,
		author      = {{National Instruments}},
		title       = {cDAQ-9171 Specifications},
		date        = {2025-01-31},
		url         = {https://www.ni.com/docs/de-DE/bundle/cdaq-9171-specs/page/specs.html},
		urldate     = {2025},
	}
	
	% device d11-2, National Instruments, NI-9129
	@online{ni9217,
		author      = {{National Instruments}},
		title       = {NI-9217 Specifications},
		date        = {2024-11-19},
		url         = {https://www.ni.com/docs/de-DE/bundle/ni-9210-specs/page/specs.html},
		urldate     = {2024},
	}
	
	% device d24, Sartorius BP12000
	@online{sarbp12000,
		author      = {Sartorius},
		title       = {BP12000S Specifications},
		year        = {1995},
		url         = {https://www.dataweigh.com/device/sartorius-lab/bp-series/bp12000s#specifications},
		urldate     = {1995},
	}
	
	% device d25, Sartorius LC2200
	@online{sarlc2200,
		author      = {Sartorius},
		title       = {LC2200P Specifications},
		year        = {2002},
		url         = {https://www.dataweigh.com/device/sartorius-lab/lc-series/lc2200p#specifications},
		urldate     = {2002},
	}
	
	% device d26, Mettler Toledo MS16001L
	@online{mtms16001l,
		author      = {{Mettler Toledo}},
		title       = {Precision Balance MS16001L/02 Specifications},
		year        = {2023},
		url         = {https://www.mt.com/my/en/home/phased_out_products/Laboratory_Weighing_Solutions/precision-balances/MS16001L-02.html},
		urldate     = {2023},
	}
	
	% device d27, Helios-Preisser DIGIMET 1320
	@online{hpdigimet1320,
		author      = {Helios-Preisser},
		title       = {METROLOGY CATALOGUE 2023/2024 \textendash{} DIGIMET 1320},
		date        = {2023-11-01},
		url         = {https://www.helios-preisser.com/fileadmin/user_upload/_assets/Downloads/Catalog_HP_EN_2023.pdf},
		urldate     = {2023},
	}
	
	% device d32, Testo 177-T4
	@online{testo177t4,
		author      = {Testo},
		title       = {testo 177-T4 Short Instruction Manual},
		date        = {2011-11-18},
		url         = {https://static.testo.com/image/upload/Instruction-manual-and-Software/Instruction-manuals/testo-177-short-instruction-manual-7396.pdf},
		urldate     = {2011},
	}
	
	% device d33, Testo 177-H1
	@online{testo177h1,
		author      = {Testo},
		title       = {testo 177-H1 Short Instruction Manual},
		date        = {2011-09-19},
		url         = {https://static.testo.com/image/upload/Instruction-manual-and-Software/Instruction-manuals/testo-177-short-instruction-manual.pdf},
		urldate     = {2011},
	}
	
\end{filecontents}
%
%###############################################################################
% Analysis data from GNU Octave
%
% analysis parameters
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.param.ersdel.d\endcsname{electromagnetic response section, delay, samples}
\expandafter\def\csname oct2tex.param.ersdel.u\endcsname{\ensuremath{1}}
\expandafter\def\csname oct2tex.param.ersdel.v\endcsname{10}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.param.ersdeluc1.d\endcsname{electromagnetic response section, delay uncertainty, low}
\expandafter\def\csname oct2tex.param.ersdeluc1.u\endcsname{\ensuremath{1}}
\expandafter\def\csname oct2tex.param.ersdeluc1.v\endcsname{5}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.param.ersdeluc2.d\endcsname{electromagnetic response section, delay uncertainty, low}
\expandafter\def\csname oct2tex.param.ersdeluc2.u\endcsname{\ensuremath{1}}
\expandafter\def\csname oct2tex.param.ersdeluc2.v\endcsname{2}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.param.erslen.d\endcsname{electromagnetic response section, length, samples}
\expandafter\def\csname oct2tex.param.erslen.u\endcsname{\ensuremath{1}}
\expandafter\def\csname oct2tex.param.erslen.v\endcsname{90}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.param.distuc1.d\endcsname{distance, uncertainty, low (Helios-Preisser, DIGIMET 1320)}
\expandafter\def\csname oct2tex.param.distuc1.u\endcsname{\ensuremath{mm}}
\expandafter\def\csname oct2tex.param.distuc1.v\endcsname{-0.0100000000000000}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.param.distuc2.d\endcsname{distance, uncertainty, high (Helios-Preisser, DIGIMET 1320L)}
\expandafter\def\csname oct2tex.param.distuc2.u\endcsname{\ensuremath{mm}}
\expandafter\def\csname oct2tex.param.distuc2.v\endcsname{0.0100000000000000}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.param.wghtuc1.d\endcsname{weight, uncertainty, low (Mettler Toledo, MS16001L)}
\expandafter\def\csname oct2tex.param.wghtuc1.u\endcsname{\ensuremath{deg Celsius}}
\expandafter\def\csname oct2tex.param.wghtuc1.v\endcsname{-0.1000000000000000}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.param.wghtuc2.d\endcsname{weight, uncertainty, high (Mettler Toledo, MS16001L)}
\expandafter\def\csname oct2tex.param.wghtuc2.u\endcsname{\ensuremath{deg Celsius}}
\expandafter\def\csname oct2tex.param.wghtuc2.v\endcsname{0.1000000000000000}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.param.tempuc1.d\endcsname{environ. temperature, uncertainty, low (Testo 177-H1)}
\expandafter\def\csname oct2tex.param.tempuc1.u\endcsname{\ensuremath{deg Celsius}}
\expandafter\def\csname oct2tex.param.tempuc1.v\endcsname{-0.3000000000000000}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.param.tempuc2.d\endcsname{environ. temperature, uncertainty, high (Testo 177-H1)}
\expandafter\def\csname oct2tex.param.tempuc2.u\endcsname{\ensuremath{deg Celsius}}
\expandafter\def\csname oct2tex.param.tempuc2.v\endcsname{0.3000000000000000}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.param.humidstdtemp.d\endcsname{environ. humidity, standard temperature, (Testo 177-H1)}
\expandafter\def\csname oct2tex.param.humidstdtemp.u\endcsname{\ensuremath{\%}}
\expandafter\def\csname oct2tex.param.humidstdtemp.v\endcsname{25.0000000000000000}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.param.humiduc1.d\endcsname{environ. humidity, uncertainty, low (Testo 177-H1)}
\expandafter\def\csname oct2tex.param.humiduc1.u\endcsname{\ensuremath{\%}}
\expandafter\def\csname oct2tex.param.humiduc1.v\endcsname{-3.0000000000000000}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.param.humiduc2.d\endcsname{environ. humidity, uncertainty, high (Testo 177-H1)}
\expandafter\def\csname oct2tex.param.humiduc2.u\endcsname{\ensuremath{\%}}
\expandafter\def\csname oct2tex.param.humiduc2.v\endcsname{3.0000000000000000}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.param.humiducrel1.d\endcsname{environ. humidity, relative uncertainty, low (Testo 177-H1)}
\expandafter\def\csname oct2tex.param.humiducrel1.u\endcsname{\ensuremath{\%/K}}
\expandafter\def\csname oct2tex.param.humiducrel1.v\endcsname{-0.0600000000000000}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.param.humiducrel2.d\endcsname{environ. humidity, relative uncertainty, high (Testo 177-H1)}
\expandafter\def\csname oct2tex.param.humiducrel2.u\endcsname{\ensuremath{\%/K}}
\expandafter\def\csname oct2tex.param.humiducrel2.v\endcsname{0.0600000000000000}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.param.distairuc1.d\endcsname{air, distance uncertainty, low (measuring process)}
\expandafter\def\csname oct2tex.param.distairuc1.u\endcsname{\ensuremath{mm}}
\expandafter\def\csname oct2tex.param.distairuc1.v\endcsname{-3.0000000000000000}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.param.distairuc2.d\endcsname{air, distance uncertainty, high (measuring process)}
\expandafter\def\csname oct2tex.param.distairuc2.u\endcsname{\ensuremath{mm}}
\expandafter\def\csname oct2tex.param.distairuc2.v\endcsname{0.0000000000000000}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.param.distwatuc1.d\endcsname{water, distance uncertainty, low (measuring process)}
\expandafter\def\csname oct2tex.param.distwatuc1.u\endcsname{\ensuremath{mm}}
\expandafter\def\csname oct2tex.param.distwatuc1.v\endcsname{-1.0000000000000000}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.param.distwatuc2.d\endcsname{water, distance uncertainty, high (measuring process)}
\expandafter\def\csname oct2tex.param.distwatuc2.u\endcsname{\ensuremath{mm}}
\expandafter\def\csname oct2tex.param.distwatuc2.v\endcsname{0.0000000000000000}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.param.distaluuc1.d\endcsname{aluminium cyl., distance uncertainty, low (measuring process)}
\expandafter\def\csname oct2tex.param.distaluuc1.u\endcsname{\ensuremath{mm}}
\expandafter\def\csname oct2tex.param.distaluuc1.v\endcsname{0.0000000000000000}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.param.distaluuc2.d\endcsname{aluminium cyl., distance uncertainty, high (measuring process)}
\expandafter\def\csname oct2tex.param.distaluuc2.u\endcsname{\ensuremath{mm}}
\expandafter\def\csname oct2tex.param.distaluuc2.v\endcsname{0.0000000000000000}
%
% analysis results: air, D = 25 mm
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d25_v800_P.t0.d\endcsname{time, pulse trigger event}
\expandafter\def\csname oct2tex.air_d25_v800_P.t0.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.air_d25_v800_P.t0.v\endcsname{1.0000000000000000}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d25_v800_P.t0a.d\endcsname{time, pulse trigger event, lower limit}
\expandafter\def\csname oct2tex.air_d25_v800_P.t0a.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.air_d25_v800_P.t0a.v\endcsname{0.5000000000000000}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d25_v800_P.t0b.d\endcsname{time, pulse trigger event, upper limit}
\expandafter\def\csname oct2tex.air_d25_v800_P.t0b.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.air_d25_v800_P.t0b.v\endcsname{1.2000000476837158}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d25_v800_P.t1.d\endcsname{time-of-flight, first appearance of wave}
\expandafter\def\csname oct2tex.air_d25_v800_P.t1.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.air_d25_v800_P.t1.v\endcsname{72.0510025024414062}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d25_v800_P.t1a.d\endcsname{time-of-flight, first appearance of wave, lower limit}
\expandafter\def\csname oct2tex.air_d25_v800_P.t1a.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.air_d25_v800_P.t1a.v\endcsname{62.7627525329589844}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d25_v800_P.t1b.d\endcsname{time-of-flight, first appearance of wave, upper limit}
\expandafter\def\csname oct2tex.air_d25_v800_P.t1b.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.air_d25_v800_P.t1b.v\endcsname{72.2671737670898438}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d25_v800_P.t2.d\endcsname{time-of-flight, first reflection of wave}
\expandafter\def\csname oct2tex.air_d25_v800_P.t2.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.air_d25_v800_P.t2.v\endcsname{214.1529998779296875}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d25_v800_P.t2a.d\endcsname{time-of-flight, first reflection of wave, lower limit}
\expandafter\def\csname oct2tex.air_d25_v800_P.t2a.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.air_d25_v800_P.t2a.v\endcsname{187.2882690429687500}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d25_v800_P.t2b.d\endcsname{time-of-flight, first reflection of wave, upper limit}
\expandafter\def\csname oct2tex.air_d25_v800_P.t2b.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.air_d25_v800_P.t2b.v\endcsname{214.4015045166015625}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d25_v800_P.t3.d\endcsname{time-of-flight, second reflection of wave}
\expandafter\def\csname oct2tex.air_d25_v800_P.t3.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.air_d25_v800_P.t3.v\endcsname{356.2550048828125000}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d25_v800_P.t3a.d\endcsname{time-of-flight, second reflection of wave, lower limit}
\expandafter\def\csname oct2tex.air_d25_v800_P.t3a.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.air_d25_v800_P.t3a.v\endcsname{311.8137817382812500}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d25_v800_P.t3b.d\endcsname{time-of-flight, second reflection of wave, upper limit}
\expandafter\def\csname oct2tex.air_d25_v800_P.t3b.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.air_d25_v800_P.t3b.v\endcsname{356.5358581542968750}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d25_v800_P.umd.d\endcsname{ultrasonic measuring distance}
\expandafter\def\csname oct2tex.air_d25_v800_P.umd.u\endcsname{\ensuremath{\text{mm}}}
\expandafter\def\csname oct2tex.air_d25_v800_P.umd.v\endcsname{24.4499999999999993}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d25_v800_P.umda.d\endcsname{ultrasonic measuring distance, lower limit}
\expandafter\def\csname oct2tex.air_d25_v800_P.umda.u\endcsname{\ensuremath{\text{mm}}}
\expandafter\def\csname oct2tex.air_d25_v800_P.umda.v\endcsname{21.4399999999999977}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d25_v800_P.umdb.d\endcsname{ultrasonic measuring distance, upper limit}
\expandafter\def\csname oct2tex.air_d25_v800_P.umdb.u\endcsname{\ensuremath{\text{mm}}}
\expandafter\def\csname oct2tex.air_d25_v800_P.umdb.v\endcsname{24.4399999999999977}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d25_v800_P.cs.d\endcsname{speed of sound}
\expandafter\def\csname oct2tex.air_d25_v800_P.cs.u\endcsname{\ensuremath{m/Sec}}
\expandafter\def\csname oct2tex.air_d25_v800_P.cs.v\endcsname{344.1190000000000282}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d25_v800_P.csa.d\endcsname{speed of sound, lower limit}
\expandafter\def\csname oct2tex.air_d25_v800_P.csa.u\endcsname{\ensuremath{m/Sec}}
\expandafter\def\csname oct2tex.air_d25_v800_P.csa.v\endcsname{344.3471200000000181}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d25_v800_P.csb.d\endcsname{speed of sound, upper limit}
\expandafter\def\csname oct2tex.air_d25_v800_P.csb.u\endcsname{\ensuremath{m/Sec}}
\expandafter\def\csname oct2tex.air_d25_v800_P.csb.v\endcsname{343.9000000000000341}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d25_v800_P.tm.d\endcsname{environment temperature}
\expandafter\def\csname oct2tex.air_d25_v800_P.tm.u\endcsname{\ensuremath{{}^{\circ} \text{Celsius}}}
\expandafter\def\csname oct2tex.air_d25_v800_P.tm.v\endcsname{20.0000000000000000}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d25_v800_P.tma.d\endcsname{environment temperature, lower limit}
\expandafter\def\csname oct2tex.air_d25_v800_P.tma.u\endcsname{\ensuremath{{}^{\circ} \text{Celsius}}}
\expandafter\def\csname oct2tex.air_d25_v800_P.tma.v\endcsname{19.6999999999999993}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d25_v800_P.tmb.d\endcsname{environment temperature, upper limit}
\expandafter\def\csname oct2tex.air_d25_v800_P.tmb.u\endcsname{\ensuremath{{}^{\circ} \text{Celsius}}}
\expandafter\def\csname oct2tex.air_d25_v800_P.tmb.v\endcsname{20.3000000000000007}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d25_v800_P.hu.d\endcsname{humidity}
\expandafter\def\csname oct2tex.air_d25_v800_P.hu.u\endcsname{\ensuremath{\%}}
\expandafter\def\csname oct2tex.air_d25_v800_P.hu.v\endcsname{61.8999999999999986}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d25_v800_P.hua.d\endcsname{humidity, lower limit}
\expandafter\def\csname oct2tex.air_d25_v800_P.hua.u\endcsname{\ensuremath{\%}}
\expandafter\def\csname oct2tex.air_d25_v800_P.hua.v\endcsname{58.6000000000000014}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d25_v800_P.hub.d\endcsname{humidity, upper limit}
\expandafter\def\csname oct2tex.air_d25_v800_P.hub.u\endcsname{\ensuremath{\%}}
\expandafter\def\csname oct2tex.air_d25_v800_P.hub.v\endcsname{65.2000000000000028}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d25_v800_P.stab.d\endcsname{signal table, c1=sample index, c2=time signature, c3=ensemble average}
\expandafter\def\csname oct2tex.air_d25_v800_P.stab.u\endcsname{\ensuremath{\text{V}}}
\begin{filecontents}[overwrite]{oct2tex.air_d25_v800_P.stab.v}
	idx ; c1 ; c2 ; c3
	1 ; 1005.0000000000000000 ; 0.4000000059604645 ; 0.0000018052248834
	2 ; 1014.0000000000000000 ; 1.2999999523162842 ; 0.0000773149295128
	3 ; 1023.0000000000000000 ; 2.1999998092651367 ; 0.0002053090574918
	4 ; 1032.0000000000000000 ; 3.0999999046325684 ; 0.0001652468054090
	5 ; 1041.0000000000000000 ; 3.9999997615814209 ; 0.0001487775152782
	6 ; 1050.0000000000000000 ; 4.8999996185302734 ; 0.0000552663477720
	7 ; 1059.0000000000000000 ; 5.8000001907348633 ; 0.0000098628424894
	8 ; 1068.0000000000000000 ; 6.6999998092651367 ; -0.0000082484903032
	9 ; 1077.0000000000000000 ; 7.5999999046325684 ; -0.0000046408699745
	10 ; 1086.0000000000000000 ; 8.5000000000000000 ; -0.0000031819545256
	11 ; 1095.0000000000000000 ; 9.3999996185302734 ; 0.0000026781397082
	12 ; 1104.0000000000000000 ; 10.2999992370605469 ; 0.0000015915724134
	13 ; 1113.0000000000000000 ; 11.2000007629394531 ; -0.0000011919747749
	14 ; 1122.0000000000000000 ; 12.1000003814697266 ; 0.0000019761496333
	15 ; 1131.0000000000000000 ; 13.0000000000000000 ; 0.0000012558500657
	16 ; 1140.0000000000000000 ; 13.8999996185302734 ; -0.0000013140526107
	17 ; 1149.0000000000000000 ; 14.7999992370605469 ; -0.0000013872901263
	18 ; 1158.0000000000000000 ; 15.7000007629394531 ; -0.0000020770798983
	19 ; 1167.0000000000000000 ; 16.5999984741210938 ; -0.0000014056097370
	20 ; 1176.0000000000000000 ; 17.5000000000000000 ; -0.0000008623350141
	21 ; 1185.0000000000000000 ; 18.3999996185302734 ; -0.0000009538999848
	22 ; 1194.0000000000000000 ; 19.2999992370605469 ; -0.0000012713126125
	23 ; 1203.0000000000000000 ; 20.2000007629394531 ; -0.0000013018373011
	24 ; 1212.0000000000000000 ; 21.0999984741210938 ; -0.0000008379100223
	25 ; 1221.0000000000000000 ; 22.0000000000000000 ; 0.0000012436400993
	26 ; 1230.0000000000000000 ; 22.8999996185302734 ; 0.0000004012575516
	27 ; 1239.0000000000000000 ; 23.7999992370605469 ; -0.0000011126051049
	28 ; 1248.0000000000000000 ; 24.7000007629394531 ; 0.0000008102375659
	29 ; 1257.0000000000000000 ; 25.6000003814697266 ; -0.0000019488973066
	30 ; 1266.0000000000000000 ; 26.5000000000000000 ; -0.0000011248176861
	31 ; 1275.0000000000000000 ; 27.4000015258789062 ; -0.0000010027299595
	32 ; 1284.0000000000000000 ; 28.2999992370605469 ; -0.0000008623349572
	33 ; 1293.0000000000000000 ; 29.2000007629394531 ; -0.0000010393572438
	34 ; 1302.0000000000000000 ; 30.1000003814697266 ; -0.0000009172748605
	35 ; 1311.0000000000000000 ; 31.0000000000000000 ; -0.0000026020577479
	36 ; 1320.0000000000000000 ; 31.8999996185302734 ; -0.0000026325649287
	37 ; 1329.0000000000000000 ; 32.7999992370605469 ; -0.0000010271476185
	38 ; 1338.0000000000000000 ; 33.7000007629394531 ; -0.0000011980697536
	39 ; 1347.0000000000000000 ; 34.5999984741210938 ; -0.0000021991697849
	40 ; 1356.0000000000000000 ; 35.5000000000000000 ; -0.0000014178274341
	41 ; 1365.0000000000000000 ; 36.4000015258789062 ; -0.0000017474551441
	42 ; 1374.0000000000000000 ; 37.3000030517578125 ; -0.0000021869625471
	43 ; 1383.0000000000000000 ; 38.1999969482421875 ; 0.0000009933623915
	44 ; 1392.0000000000000000 ; 39.0999984741210938 ; 0.0000012985749436
	45 ; 1401.0000000000000000 ; 40.0000000000000000 ; 0.0000009262099638
	46 ; 1410.0000000000000000 ; 40.9000015258789062 ; -0.0000019366873403
	47 ; 1419.0000000000000000 ; 41.7999992370605469 ; -0.0000009538975974
	48 ; 1428.0000000000000000 ; 42.7000007629394531 ; 0.0000008163399912
	49 ; 1437.0000000000000000 ; 43.5999984741210938 ; 0.0000009079050756
	50 ; 1446.0000000000000000 ; 44.5000000000000000 ; -0.0000014361426111
	51 ; 1455.0000000000000000 ; 45.4000015258789062 ; -0.0000011980624777
	52 ; 1464.0000000000000000 ; 46.3000030517578125 ; 0.0000016282050410
	53 ; 1473.0000000000000000 ; 47.1999969482421875 ; -0.0000009783195765
	54 ; 1482.0000000000000000 ; 48.0999984741210938 ; -0.0000009966350945
	55 ; 1491.0000000000000000 ; 49.0000000000000000 ; -0.0000024250296065
	56 ; 1500.0000000000000000 ; 49.9000015258789062 ; -0.0000010637700143
	57 ; 1509.0000000000000000 ; 50.8000030517578125 ; 0.0000009078923426
	58 ; 1518.0000000000000000 ; 51.7000007629394531 ; -0.0000020648749341
	59 ; 1527.0000000000000000 ; 52.5999984741210938 ; -0.0000023151528694
	60 ; 1536.0000000000000000 ; 53.5000000000000000 ; -0.0000014666500192
	61 ; 1545.0000000000000000 ; 54.4000015258789062 ; -0.0000011492427348
	62 ; 1554.0000000000000000 ; 55.2999992370605469 ; -0.0000020160396161
	63 ; 1563.0000000000000000 ; 56.2000007629394531 ; -0.0000023639854589
	64 ; 1572.0000000000000000 ; 57.0999984741210938 ; -0.0000015948523924
	65 ; 1581.0000000000000000 ; 58.0000000000000000 ; -0.0000019183723907
	66 ; 1590.0000000000000000 ; 58.9000015258789062 ; -0.0000009233773426
	67 ; 1599.0000000000000000 ; 59.8000030517578125 ; -0.0000020282523110
	68 ; 1608.0000000000000000 ; 60.6999969482421875 ; -0.0000016436827082
	69 ; 1617.0000000000000000 ; 61.5999984741210938 ; -0.0000011980724821
	70 ; 1626.0000000000000000 ; 62.5000000000000000 ; 0.0000005904748832
	71 ; 1635.0000000000000000 ; 63.4000015258789062 ; 0.0000009628474800
	72 ; 1644.0000000000000000 ; 64.2999954223632812 ; -0.0000013628825855
	73 ; 1653.0000000000000000 ; 65.1999969482421875 ; 0.0000041980902097
	74 ; 1662.0000000000000000 ; 66.0999984741210938 ; 0.0002528491022531
	75 ; 1671.0000000000000000 ; 67.0000000000000000 ; 0.0008675969438627
	76 ; 1680.0000000000000000 ; 67.9000015258789062 ; 0.0009586602682248
	77 ; 1689.0000000000000000 ; 68.8000030517578125 ; 0.0008592157391831
	78 ; 1698.0000000000000000 ; 69.6999969482421875 ; -0.0005116547108628
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\end{filecontents}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d25_v800_P.stabxlbl.d\endcsname{signal table, x axis label and unit}
\expandafter\def\csname oct2tex.air_d25_v800_P.stabxlbl.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.air_d25_v800_P.stabxlbl.v\endcsname{Time}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d25_v800_P.stabylbl.d\endcsname{signal table, y axis label and unit}
\expandafter\def\csname oct2tex.air_d25_v800_P.stabylbl.u\endcsname{\ensuremath{\text{V}}}
\expandafter\def\csname oct2tex.air_d25_v800_P.stabylbl.v\endcsname{Amplitude}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d25_v800_P.stabmin.d\endcsname{signal table, minimum}
\expandafter\def\csname oct2tex.air_d25_v800_P.stabmin.u\endcsname{\ensuremath{\text{V}}}
\expandafter\def\csname oct2tex.air_d25_v800_P.stabmin.v\endcsname{-0.0007337398710661}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d25_v800_P.stabmax.d\endcsname{signal table, maximum}
\expandafter\def\csname oct2tex.air_d25_v800_P.stabmax.u\endcsname{\ensuremath{\text{V}}}
\expandafter\def\csname oct2tex.air_d25_v800_P.stabmax.v\endcsname{0.0009586602682248}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d25_v800_P.dtab.d\endcsname{deviation table, c1=sample index, c2=time signature, c3=min, c4=q25, c5=mean, c6=q75, c7=max}
\expandafter\def\csname oct2tex.air_d25_v800_P.dtab.u\endcsname{\ensuremath{\text{V}}}
\begin{filecontents}[overwrite]{oct2tex.air_d25_v800_P.dtab.v}
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	463 ; 5164.0000000000000000 ; 416.2999877929687500 ; -0.0000252772497333 ; -0.0000065219001044 ; -0.0000000000018190 ; 0.0000075551852206 ; 0.0000262061494141
	464 ; 5173.0000000000000000 ; 417.2000122070312500 ; -0.0000228415519814 ; -0.0000075981897680 ; 0.0000000000031378 ; 0.0000067541850512 ; 0.0000189785860130
	465 ; 5182.0000000000000000 ; 418.1000061035156250 ; -0.0000231101621466 ; -0.0000073808478191 ; -0.0000000000046384 ; 0.0000072688026194 ; 0.0000220917099796
	466 ; 5191.0000000000000000 ; 419.0000000000000000 ; -0.0000241295820160 ; -0.0000079168203229 ; -0.0000000000053660 ; 0.0000088636788860 ; 0.0000241975649260
	467 ; 5200.0000000000000000 ; 419.8999938964843750 ; -0.0000257594329014 ; -0.0000079519340943 ; 0.0000000000066393 ; 0.0000073751771197 ; 0.0000249913646257
	468 ; 5209.0000000000000000 ; 420.7999877929687500 ; -0.0000222800335905 ; -0.0000082844326244 ; 0.0000000000060027 ; 0.0000084508756117 ; 0.0000192409715964
	469 ; 5218.0000000000000000 ; 421.7000122070312500 ; -0.0000274807989626 ; -0.0000062413728301 ; -0.0000000000037289 ; 0.0000063876295826 ; 0.0000223832503252
	470 ; 5227.0000000000000000 ; 422.6000061035156250 ; -0.0000230491186812 ; -0.0000082273072621 ; -0.0000000000044338 ; 0.0000076744499893 ; 0.0000243930207944
	471 ; 5236.0000000000000000 ; 423.5000000000000000 ; -0.0000285368878394 ; -0.0000072049024311 ; 0.0000000000074124 ; 0.0000079261908468 ; 0.0000223542483582
	472 ; 5245.0000000000000000 ; 424.4000244140625000 ; -0.0000238297907345 ; -0.0000075912885222 ; 0.0000000000050477 ; 0.0000077693894127 ; 0.0000206388103834
	473 ; 5254.0000000000000000 ; 425.2999877929687500 ; -0.0000224441464525 ; -0.0000079761284724 ; 0.0000000000040927 ; 0.0000078629545897 ; 0.0000216262724280
	474 ; 5263.5000000000000000 ; 426.2500000000000000 ; -0.0000282254986814 ; -0.0000072587681643 ; -0.0000000000064347 ; 0.0000063869701989 ; 0.0000285668702418
\end{filecontents}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d25_v800_P.dtabxlbl.d\endcsname{deviation table, x axis label and unit}
\expandafter\def\csname oct2tex.air_d25_v800_P.dtabxlbl.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.air_d25_v800_P.dtabxlbl.v\endcsname{Time}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d25_v800_P.dtabylbl.d\endcsname{deviation table, y axis label and unit}
\expandafter\def\csname oct2tex.air_d25_v800_P.dtabylbl.u\endcsname{\ensuremath{\text{V}}}
\expandafter\def\csname oct2tex.air_d25_v800_P.dtabylbl.v\endcsname{Deviation}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d25_v800_P.dtabmin.d\endcsname{deviation table, minimum}
\expandafter\def\csname oct2tex.air_d25_v800_P.dtabmin.u\endcsname{\ensuremath{\text{V}}}
\expandafter\def\csname oct2tex.air_d25_v800_P.dtabmin.v\endcsname{-0.0000428633647971}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d25_v800_P.dtabmax.d\endcsname{deviation table, maximum}
\expandafter\def\csname oct2tex.air_d25_v800_P.dtabmax.u\endcsname{\ensuremath{\text{V}}}
\expandafter\def\csname oct2tex.air_d25_v800_P.dtabmax.v\endcsname{0.0000448928731203}
%
% analysis results, air, D = 50 mm
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d50_v800_P.t0.d\endcsname{time, pulse trigger event}
\expandafter\def\csname oct2tex.air_d50_v800_P.t0.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.air_d50_v800_P.t0.v\endcsname{1.0000000000000000}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d50_v800_P.t0a.d\endcsname{time, pulse trigger event, lower limit}
\expandafter\def\csname oct2tex.air_d50_v800_P.t0a.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.air_d50_v800_P.t0a.v\endcsname{0.5000000000000000}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d50_v800_P.t0b.d\endcsname{time, pulse trigger event, upper limit}
\expandafter\def\csname oct2tex.air_d50_v800_P.t0b.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.air_d50_v800_P.t0b.v\endcsname{1.2000000476837158}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d50_v800_P.t1.d\endcsname{time-of-flight, first appearance of wave}
\expandafter\def\csname oct2tex.air_d50_v800_P.t1.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.air_d50_v800_P.t1.v\endcsname{146.6452484130859375}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d50_v800_P.t1a.d\endcsname{time-of-flight, first appearance of wave, lower limit}
\expandafter\def\csname oct2tex.air_d50_v800_P.t1a.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.air_d50_v800_P.t1a.v\endcsname{137.3111572265625000}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d50_v800_P.t1b.d\endcsname{time-of-flight, first appearance of wave, upper limit}
\expandafter\def\csname oct2tex.air_d50_v800_P.t1b.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.air_d50_v800_P.t1b.v\endcsname{146.9256896972656250}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d50_v800_P.t2.d\endcsname{time-of-flight, first reflection of wave}
\expandafter\def\csname oct2tex.air_d50_v800_P.t2.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.air_d50_v800_P.t2.v\endcsname{437.9357910156250000}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d50_v800_P.t2a.d\endcsname{time-of-flight, first reflection of wave, lower limit}
\expandafter\def\csname oct2tex.air_d50_v800_P.t2a.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.air_d50_v800_P.t2a.v\endcsname{410.9334411621093750}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d50_v800_P.t2b.d\endcsname{time-of-flight, first reflection of wave, upper limit}
\expandafter\def\csname oct2tex.air_d50_v800_P.t2b.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.air_d50_v800_P.t2b.v\endcsname{438.3770751953125000}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d50_v800_P.t3.d\endcsname{time-of-flight, second reflection of wave}
\expandafter\def\csname oct2tex.air_d50_v800_P.t3.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.air_d50_v800_P.t3.v\endcsname{729.2262573242187500}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d50_v800_P.t3a.d\endcsname{time-of-flight, second reflection of wave, lower limit}
\expandafter\def\csname oct2tex.air_d50_v800_P.t3a.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.air_d50_v800_P.t3a.v\endcsname{684.5557250976562500}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d50_v800_P.t3b.d\endcsname{time-of-flight, second reflection of wave, upper limit}
\expandafter\def\csname oct2tex.air_d50_v800_P.t3b.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.air_d50_v800_P.t3b.v\endcsname{729.8284912109375000}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d50_v800_P.umd.d\endcsname{ultrasonic measuring distance}
\expandafter\def\csname oct2tex.air_d50_v800_P.umd.u\endcsname{\ensuremath{\text{mm}}}
\expandafter\def\csname oct2tex.air_d50_v800_P.umd.v\endcsname{50.2000000000000028}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d50_v800_P.umda.d\endcsname{ultrasonic measuring distance, lower limit}
\expandafter\def\csname oct2tex.air_d50_v800_P.umda.u\endcsname{\ensuremath{\text{mm}}}
\expandafter\def\csname oct2tex.air_d50_v800_P.umda.v\endcsname{47.1900000000000048}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d50_v800_P.umdb.d\endcsname{ultrasonic measuring distance, upper limit}
\expandafter\def\csname oct2tex.air_d50_v800_P.umdb.u\endcsname{\ensuremath{\text{mm}}}
\expandafter\def\csname oct2tex.air_d50_v800_P.umdb.v\endcsname{50.1900000000000048}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d50_v800_P.cs.d\endcsname{speed of sound}
\expandafter\def\csname oct2tex.air_d50_v800_P.cs.u\endcsname{\ensuremath{m/Sec}}
\expandafter\def\csname oct2tex.air_d50_v800_P.cs.v\endcsname{344.6730800000000272}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d50_v800_P.csa.d\endcsname{speed of sound, lower limit}
\expandafter\def\csname oct2tex.air_d50_v800_P.csa.u\endcsname{\ensuremath{m/Sec}}
\expandafter\def\csname oct2tex.air_d50_v800_P.csa.v\endcsname{344.9280247999999460}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d50_v800_P.csb.d\endcsname{speed of sound, upper limit}
\expandafter\def\csname oct2tex.air_d50_v800_P.csb.u\endcsname{\ensuremath{m/Sec}}
\expandafter\def\csname oct2tex.air_d50_v800_P.csb.v\endcsname{344.4142183999999816}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d50_v800_P.tm.d\endcsname{environment temperature}
\expandafter\def\csname oct2tex.air_d50_v800_P.tm.u\endcsname{\ensuremath{{}^{\circ} \text{Celsius}}}
\expandafter\def\csname oct2tex.air_d50_v800_P.tm.v\endcsname{20.6000000000000014}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d50_v800_P.tma.d\endcsname{environment temperature, lower limit}
\expandafter\def\csname oct2tex.air_d50_v800_P.tma.u\endcsname{\ensuremath{{}^{\circ} \text{Celsius}}}
\expandafter\def\csname oct2tex.air_d50_v800_P.tma.v\endcsname{20.3000000000000007}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d50_v800_P.tmb.d\endcsname{environment temperature, upper limit}
\expandafter\def\csname oct2tex.air_d50_v800_P.tmb.u\endcsname{\ensuremath{{}^{\circ} \text{Celsius}}}
\expandafter\def\csname oct2tex.air_d50_v800_P.tmb.v\endcsname{20.9000000000000021}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d50_v800_P.hu.d\endcsname{humidity}
\expandafter\def\csname oct2tex.air_d50_v800_P.hu.u\endcsname{\ensuremath{\%}}
\expandafter\def\csname oct2tex.air_d50_v800_P.hu.v\endcsname{74.0999999999999943}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d50_v800_P.hua.d\endcsname{humidity, lower limit}
\expandafter\def\csname oct2tex.air_d50_v800_P.hua.u\endcsname{\ensuremath{\%}}
\expandafter\def\csname oct2tex.air_d50_v800_P.hua.v\endcsname{70.8359999999999985}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d50_v800_P.hub.d\endcsname{humidity, upper limit}
\expandafter\def\csname oct2tex.air_d50_v800_P.hub.u\endcsname{\ensuremath{\%}}
\expandafter\def\csname oct2tex.air_d50_v800_P.hub.v\endcsname{77.3639999999999901}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d50_v800_P.stab.d\endcsname{signal table, c1=sample index, c2=time signature, c3=ensemble average}
\expandafter\def\csname oct2tex.air_d50_v800_P.stab.u\endcsname{\ensuremath{\text{V}}}
\begin{filecontents}[overwrite]{oct2tex.air_d50_v800_P.stab.v}
	idx ; c1 ; c2 ; c3
	1 ; 1009.5000000000000000 ; 0.8499999642372131 ; 0.0000465216944576
	2 ; 1027.5000000000000000 ; 2.6500000953674316 ; 0.0001398863387294
	3 ; 1045.5000000000000000 ; 4.4499998092651367 ; 0.0000751933985157
	4 ; 1063.5000000000000000 ; 6.2500000000000000 ; 0.0000078939201558
	5 ; 1081.5000000000000000 ; 8.0499992370605469 ; -0.0000036736473703
	6 ; 1099.5000000000000000 ; 9.8500003814697266 ; 0.0000024733421924
	7 ; 1117.5000000000000000 ; 11.6499996185302734 ; -0.0000013662324818
	8 ; 1135.5000000000000000 ; 13.4500007629394531 ; -0.0000009145200011
	9 ; 1153.5000000000000000 ; 15.2500000000000000 ; -0.0000026481225177
	10 ; 1171.5000000000000000 ; 17.0499992370605469 ; -0.0000013601299997
	11 ; 1189.5000000000000000 ; 18.8500003814697266 ; -0.0000020926352136
	12 ; 1207.5000000000000000 ; 20.6499996185302734 ; -0.0000021597895739
	13 ; 1225.5000000000000000 ; 22.4500007629394531 ; 0.0000010144350426
	14 ; 1243.5000000000000000 ; 24.2500000000000000 ; -0.0000021292698875
	15 ; 1261.5000000000000000 ; 26.0499992370605469 ; -0.0000023673278520
	16 ; 1279.5000000000000000 ; 27.8500003814697266 ; -0.0000019522451566
	17 ; 1297.5000000000000000 ; 29.6499996185302734 ; 0.0000018446074819
	18 ; 1315.5000000000000000 ; 31.4500007629394531 ; -0.0000020926399884
	19 ; 1333.5000000000000000 ; 33.2500000000000000 ; -0.0000019888752831
	20 ; 1351.5000000000000000 ; 35.0499992370605469 ; -0.0000014272826547
	21 ; 1369.5000000000000000 ; 36.8499984741210938 ; -0.0000023734373826
	22 ; 1387.5000000000000000 ; 38.6500015258789062 ; 0.0000011242999562
	23 ; 1405.5000000000000000 ; 40.4500007629394531 ; -0.0000022696724500
	24 ; 1423.5000000000000000 ; 42.2500000000000000 ; -0.0000022635672394
	25 ; 1441.5000000000000000 ; 44.0500030517578125 ; -0.0000028556753477
	26 ; 1459.5000000000000000 ; 45.8499984741210938 ; -0.0000022696722226
	27 ; 1477.5000000000000000 ; 47.6500015258789062 ; -0.0000015066326569
	28 ; 1495.5000000000000000 ; 49.4499969482421875 ; -0.0000030021774364
	29 ; 1513.5000000000000000 ; 51.2500000000000000 ; 0.0000010632572867
	30 ; 1531.5000000000000000 ; 53.0499992370605469 ; -0.0000017141801436
	31 ; 1549.5000000000000000 ; 54.8499984741210938 ; 0.0000012280798956
	32 ; 1567.5000000000000000 ; 56.6500015258789062 ; -0.0000018484746533
	33 ; 1585.5000000000000000 ; 58.4499969482421875 ; -0.0000020987449716
	34 ; 1603.5000000000000000 ; 60.2500000000000000 ; -0.0000019034025627
	35 ; 1621.5000000000000000 ; 62.0499992370605469 ; -0.0000024161749934
	36 ; 1639.5000000000000000 ; 63.8499984741210938 ; -0.0000018789926344
	37 ; 1657.5000000000000000 ; 65.6499938964843750 ; -0.0000023124000563
	38 ; 1675.5000000000000000 ; 67.4499969482421875 ; 0.0000015638075865
	39 ; 1693.5000000000000000 ; 69.2500000000000000 ; -0.0000028617801036
	40 ; 1711.5000000000000000 ; 71.0500030517578125 ; -0.0000012563598375
	41 ; 1729.5000000000000000 ; 72.8500061035156250 ; -0.0000014761124021
	42 ; 1747.5000000000000000 ; 74.6500015258789062 ; 0.0000018751301241
	43 ; 1765.5000000000000000 ; 76.4499969482421875 ; -0.0000035393495637
	44 ; 1783.5000000000000000 ; 78.2500000000000000 ; -0.0000017569072952
	45 ; 1801.5000000000000000 ; 80.0499954223632812 ; 0.0000016858973595
	46 ; 1819.5000000000000000 ; 81.8499984741210938 ; -0.0000016958625793
	47 ; 1837.5000000000000000 ; 83.6499938964843750 ; -0.0000013357098396
	48 ; 1855.5000000000000000 ; 85.4499969482421875 ; -0.0000022208323571
	49 ; 1874.0000000000000000 ; 87.3000030517578125 ; -0.0000018667973336
	50 ; 1892.5000000000000000 ; 89.1500015258789062 ; -0.0000021475848371
	51 ; 1910.5000000000000000 ; 90.9499969482421875 ; -0.0000018911999859
	52 ; 1928.5000000000000000 ; 92.7500000000000000 ; -0.0000022696699489
	53 ; 1946.5000000000000000 ; 94.5500030517578125 ; -0.0000027213802696
	54 ; 1964.5000000000000000 ; 96.3499984741210938 ; -0.0000013296200905
	55 ; 1982.5000000000000000 ; 98.1499938964843750 ; -0.0000027763221624
	56 ; 2000.5000000000000000 ; 99.9499969482421875 ; 0.0000020155348466
	57 ; 2018.5000000000000000 ; 101.7500000000000000 ; -0.0000022025249109
	58 ; 2036.5000000000000000 ; 103.5500030517578125 ; -0.0000017996326278
	59 ; 2054.5000000000000000 ; 105.3500061035156250 ; 0.0000014417175862
	60 ; 2072.5000000000000000 ; 107.1500015258789062 ; -0.0000021231676328
	61 ; 2090.5000000000000000 ; 108.9499969482421875 ; -0.0000012075124687
	62 ; 2108.5000000000000000 ; 110.7500000000000000 ; -0.0000026969601095
	63 ; 2126.5000000000000000 ; 112.5499954223632812 ; -0.0000011831123174
	64 ; 2144.5000000000000000 ; 114.3499984741210938 ; -0.0000029594423268
	65 ; 2162.5000000000000000 ; 116.1499938964843750 ; -0.0000020315976599
	66 ; 2180.5000000000000000 ; 117.9499969482421875 ; -0.0000024344747089
	67 ; 2198.5000000000000000 ; 119.7500000000000000 ; -0.0000022513575004
	68 ; 2216.5000000000000000 ; 121.5500030517578125 ; -0.0000011159576161
	69 ; 2234.5000000000000000 ; 123.3499984741210938 ; -0.0000027396947644
	70 ; 2252.5000000000000000 ; 125.1500015258789062 ; -0.0000016165125771
	71 ; 2270.5000000000000000 ; 126.9499969482421875 ; -0.0000023368124857
	72 ; 2288.5000000000000000 ; 128.7500000000000000 ; -0.0000012136299574
	73 ; 2306.5000000000000000 ; 130.5499877929687500 ; -0.0000015737774675
	74 ; 2324.5000000000000000 ; 132.3500061035156250 ; -0.0000021414775802
	75 ; 2342.5000000000000000 ; 134.1499938964843750 ; -0.0000014089628166
	76 ; 2360.5000000000000000 ; 135.9499816894531250 ; -0.0000025199474294
	77 ; 2378.5000000000000000 ; 137.7500000000000000 ; -0.0000019644626263
	78 ; 2396.5000000000000000 ; 139.5500030517578125 ; 0.0000793870349298
	79 ; 2414.5000000000000000 ; 141.3500061035156250 ; 0.0011019118828699
	80 ; 2432.5000000000000000 ; 143.1499938964843750 ; 0.0010747050400823
	81 ; 2450.5000000000000000 ; 144.9500122070312500 ; -0.0009675485780463
	82 ; 2468.5000000000000000 ; 146.7500000000000000 ; -0.0004610842152033
	83 ; 2486.5000000000000000 ; 148.5500030517578125 ; -0.0002528923214413
	84 ; 2504.5000000000000000 ; 150.3500061035156250 ; -0.0001343658659607
	85 ; 2522.5000000000000000 ; 152.1499938964843750 ; 0.0000550310287508
	86 ; 2540.5000000000000000 ; 153.9500122070312500 ; 0.0001050859718816
	87 ; 2558.5000000000000000 ; 155.7500000000000000 ; 0.0001055315733538
	88 ; 2576.5000000000000000 ; 157.5499877929687500 ; 0.0000594444172748
	89 ; 2594.5000000000000000 ; 159.3500061035156250 ; 0.0000838431442389
	90 ; 2612.5000000000000000 ; 161.1499938964843750 ; 0.0001199925682158
	91 ; 2630.5000000000000000 ; 162.9499969482421875 ; 0.0001152617769549
	92 ; 2648.5000000000000000 ; 164.7500000000000000 ; -0.0001318143040407
	93 ; 2666.5000000000000000 ; 166.5499877929687500 ; -0.0001507435808890
	94 ; 2684.5000000000000000 ; 168.3500061035156250 ; 0.0000621425060672
	95 ; 2702.5000000000000000 ; 170.1499938964843750 ; 0.0000601952488068
	96 ; 2720.5000000000000000 ; 171.9499969482421875 ; 0.0000092673917607
	97 ; 2739.0000000000000000 ; 173.8000183105468750 ; 0.0000510144236614
	98 ; 2757.5000000000000000 ; 175.6499938964843750 ; 0.0000798448527348
	99 ; 2775.5000000000000000 ; 177.4500122070312500 ; 0.0001185458822874
	100 ; 2793.5000000000000000 ; 179.2500000000000000 ; 0.0001190769398818
	101 ; 2811.5000000000000000 ; 181.0500030517578125 ; 0.0000804980154498
	102 ; 2829.5000000000000000 ; 182.8500061035156250 ; -0.0000959090248216
	103 ; 2847.5000000000000000 ; 184.6499938964843750 ; -0.0001029838604154
	104 ; 2865.5000000000000000 ; 186.4500122070312500 ; -0.0000851044896990
	105 ; 2883.5000000000000000 ; 188.2500000000000000 ; -0.0000505177376908
	106 ; 2901.5000000000000000 ; 190.0499877929687500 ; -0.0000471604143968
	107 ; 2919.5000000000000000 ; 191.8500061035156250 ; -0.0000470261038572
	108 ; 2937.5000000000000000 ; 193.6499938964843750 ; 0.0000776351080276
	109 ; 2955.5000000000000000 ; 195.4499969482421875 ; 0.0001033950829878
	110 ; 2973.5000000000000000 ; 197.2500000000000000 ; 0.0000919679296203
	111 ; 2991.5000000000000000 ; 199.0499877929687500 ; -0.0000575254452997
	112 ; 3009.5000000000000000 ; 200.8500061035156250 ; -0.0000850739525049
	113 ; 3027.5000000000000000 ; 202.6499938964843750 ; -0.0000854280297062
	114 ; 3045.5000000000000000 ; 204.4499969482421875 ; -0.0000603822336416
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	418 ; 8523.5000000000000000 ; 752.2500000000000000 ; 0.0000556048289582
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	427 ; 8685.5000000000000000 ; 768.4500122070312500 ; 0.0000143217057484
	428 ; 8703.5000000000000000 ; 770.2500000000000000 ; 0.0000120081949717
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	433 ; 8793.5000000000000000 ; 779.2500000000000000 ; -0.0000228776571021
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	435 ; 8829.5000000000000000 ; 782.8499755859375000 ; -0.0000119754386105
	436 ; 8847.5000000000000000 ; 784.6500244140625000 ; -0.0000240862918872
	437 ; 8866.0000000000000000 ; 786.5000000000000000 ; -0.0000225907515414
	438 ; 8884.5000000000000000 ; 788.3499755859375000 ; 0.0000105981216620
	439 ; 8902.5000000000000000 ; 790.1500244140625000 ; 0.0000092002374004
	440 ; 8920.5000000000000000 ; 791.9500122070312500 ; 0.0000134121701194
	441 ; 8938.5000000000000000 ; 793.7500000000000000 ; 0.0000406432773161
	442 ; 8956.5000000000000000 ; 795.5500488281250000 ; 0.0000412659283029
	443 ; 8974.5000000000000000 ; 797.3499755859375000 ; 0.0000153228138515
	444 ; 8992.5000000000000000 ; 799.1500244140625000 ; -0.0000141607761179
	445 ; 9010.5000000000000000 ; 800.9499511718750000 ; 0.0000077108043115
	446 ; 9028.5000000000000000 ; 802.7500000000000000 ; -0.0000172739310074
	447 ; 9046.5000000000000000 ; 804.5500488281250000 ; -0.0000234697617998
	448 ; 9064.5000000000000000 ; 806.3499755859375000 ; -0.0000206679178518
	449 ; 9082.5000000000000000 ; 808.1500244140625000 ; -0.0000154731897055
	450 ; 9100.5000000000000000 ; 809.9499511718750000 ; -0.0000297754704661
	451 ; 9118.5000000000000000 ; 811.7500000000000000 ; -0.0000302882253891
	452 ; 9136.5000000000000000 ; 813.5499877929687500 ; -0.0000149482102643
	453 ; 9154.5000000000000000 ; 815.3499755859375000 ; 0.0000055254777180
	454 ; 9172.5000000000000000 ; 817.1500244140625000 ; 0.0000032974251098
	455 ; 9190.5000000000000000 ; 818.9499511718750000 ; 0.0000107629221020
	456 ; 9208.5000000000000000 ; 820.7500000000000000 ; 0.0000156158093887
	457 ; 9226.5000000000000000 ; 822.5499877929687500 ; 0.0000116236315080
	458 ; 9244.5000000000000000 ; 824.3499755859375000 ; 0.0000036758847273
	459 ; 9262.5000000000000000 ; 826.1500244140625000 ; 0.0000121180801216
	460 ; 9280.5000000000000000 ; 827.9500732421875000 ; 0.0000140775564432
	461 ; 9298.5000000000000000 ; 829.7500000000000000 ; 0.0000089621735242
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	481 ; 9658.5000000000000000 ; 865.7500000000000000 ; 0.0000088706128736
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	484 ; 9712.5000000000000000 ; 871.1500244140625000 ; 0.0000046647824092
	485 ; 9731.0000000000000000 ; 873.0000000000000000 ; 0.0000024245123313
\end{filecontents}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d50_v800_P.stabxlbl.d\endcsname{signal table, x axis label and unit}
\expandafter\def\csname oct2tex.air_d50_v800_P.stabxlbl.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.air_d50_v800_P.stabxlbl.v\endcsname{Time}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d50_v800_P.stabylbl.d\endcsname{signal table, y axis label and unit}
\expandafter\def\csname oct2tex.air_d50_v800_P.stabylbl.u\endcsname{\ensuremath{\text{V}}}
\expandafter\def\csname oct2tex.air_d50_v800_P.stabylbl.v\endcsname{Amplitude}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d50_v800_P.stabmin.d\endcsname{signal table, minimum}
\expandafter\def\csname oct2tex.air_d50_v800_P.stabmin.u\endcsname{\ensuremath{\text{V}}}
\expandafter\def\csname oct2tex.air_d50_v800_P.stabmin.v\endcsname{-0.0009675485780463}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d50_v800_P.stabmax.d\endcsname{signal table, maximum}
\expandafter\def\csname oct2tex.air_d50_v800_P.stabmax.u\endcsname{\ensuremath{\text{V}}}
\expandafter\def\csname oct2tex.air_d50_v800_P.stabmax.v\endcsname{0.0011019118828699}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d50_v800_P.dtab.d\endcsname{deviation table, c1=sample index, c2=time signature, c3=min, c4=q25, c5=mean, c6=q75, c7=max}
\expandafter\def\csname oct2tex.air_d50_v800_P.dtab.u\endcsname{\ensuremath{\text{V}}}
\begin{filecontents}[overwrite]{oct2tex.air_d50_v800_P.dtab.v}
	idx ; c1 ; c2 ; c3 ; c4 ; c5 ; c6 ; c7
	1 ; 1009.5000000000000000 ; 0.8499999642372131 ; -0.0000203064664674 ; -0.0000052216237236 ; -0.0000000000064574 ; 0.0000058563764469 ; 0.0000194492131413
	2 ; 1027.5000000000000000 ; 2.6500000953674316 ; -0.0000313044583891 ; -0.0000151342601384 ; 0.0000000000229193 ; 0.0000126468912640 ; 0.0000575215381104
	3 ; 1045.5000000000000000 ; 4.4499998092651367 ; -0.0000240985464188 ; -0.0000066969478212 ; -0.0000000000076398 ; 0.0000104585014924 ; 0.0000239240525843
	4 ; 1063.5000000000000000 ; 6.2500000000000000 ; -0.0000179381386261 ; -0.0000049835548452 ; 0.0000000000010232 ; 0.0000052074124142 ; 0.0000153138844325
	5 ; 1081.5000000000000000 ; 8.0499992370605469 ; -0.0000180169899977 ; -0.0000058649898165 ; -0.0000000000003638 ; 0.0000049776399464 ; 0.0000198064444703
	6 ; 1099.5000000000000000 ; 9.8500003814697266 ; -0.0000158218299475 ; -0.0000054111424106 ; -0.0000000000003070 ; 0.0000057625074987 ; 0.0000149978695845
	7 ; 1117.5000000000000000 ; 11.6499996185302734 ; -0.0000178004847839 ; -0.0000049344625950 ; 0.0000000000001364 ; 0.0000053577377912 ; 0.0000174596552824
	8 ; 1135.5000000000000000 ; 13.4500007629394531 ; -0.0000242477544816 ; -0.0000050585626923 ; -0.0000000000002558 ; 0.0000053426647355 ; 0.0000187171517609
	9 ; 1153.5000000000000000 ; 15.2500000000000000 ; -0.0000139690200740 ; -0.0000052437198974 ; 0.0000000000004093 ; 0.0000040607801566 ; 0.0000182012445293
	10 ; 1171.5000000000000000 ; 17.0499992370605469 ; -0.0000213442126551 ; -0.0000047666298997 ; 0.0000000000001819 ; 0.0000051542624533 ; 0.0000168377737282
	11 ; 1189.5000000000000000 ; 18.8500003814697266 ; -0.0000160518029588 ; -0.0000049747977755 ; 0.0000000000003411 ; 0.0000048125925787 ; 0.0000149660354509
	12 ; 1207.5000000000000000 ; 20.6499996185302734 ; -0.0000210755861190 ; -0.0000059481753851 ; -0.0000000000003979 ; 0.0000051397501011 ; 0.0000198560755962
	13 ; 1225.5000000000000000 ; 22.4500007629394531 ; -0.0000195306020032 ; -0.0000050485473366 ; 0.0000000000003070 ; 0.0000052967297961 ; 0.0000152651500684
	14 ; 1243.5000000000000000 ; 24.2500000000000000 ; -0.0000148724866449 ; -0.0000053355747696 ; 0.0000000000002700 ; 0.0000045731626415 ; 0.0000186324759852
	15 ; 1261.5000000000000000 ; 26.0499992370605469 ; -0.0000170455823536 ; -0.0000065000949689 ; 0.0000000000003922 ; 0.0000045640499593 ; 0.0000216541266127
	16 ; 1279.5000000000000000 ; 27.8500003814697266 ; -0.0000171969550138 ; -0.0000052563750614 ; -0.0000000000002274 ; 0.0000050849703257 ; 0.0000173838325281
	17 ; 1297.5000000000000000 ; 29.6499996185302734 ; -0.0000166321078723 ; -0.0000053318576647 ; 0.0000000000002217 ; 0.0000058870527937 ; 0.0000172746913449
	18 ; 1315.5000000000000000 ; 31.4500007629394531 ; -0.0000170298681041 ; -0.0000052955820138 ; -0.0000000000003297 ; 0.0000044696271289 ; 0.0000155114048539
	19 ; 1333.5000000000000000 ; 33.2500000000000000 ; -0.0000217389406316 ; -0.0000050277849368 ; -0.0000000000003752 ; 0.0000053582821238 ; 0.0000176427911356
	20 ; 1351.5000000000000000 ; 35.0499992370605469 ; -0.0000151890153575 ; -0.0000053116950767 ; 0.0000000000002615 ; 0.0000058609048210 ; 0.0000159501523740
	21 ; 1369.5000000000000000 ; 36.8499984741210938 ; -0.0000186279630725 ; -0.0000055778145907 ; -0.0000000000002615 ; 0.0000050357202781 ; 0.0000168997848959
	22 ; 1387.5000000000000000 ; 38.6500015258789062 ; -0.0000166744885064 ; -0.0000046064274102 ; -0.0000000000001421 ; 0.0000056907501857 ; 0.0000188718422578
	23 ; 1405.5000000000000000 ; 40.4500007629394531 ; -0.0000186951074284 ; -0.0000055172877182 ; 0.0000000000003411 ; 0.0000058323621488 ; 0.0000171047122421
	24 ; 1423.5000000000000000 ; 42.2500000000000000 ; -0.0000190225655388 ; -0.0000049805398703 ; -0.0000000000002160 ; 0.0000054240454119 ; 0.0000162531687238
	25 ; 1441.5000000000000000 ; 44.0500030517578125 ; -0.0000178824157047 ; -0.0000053818052947 ; 0.0000000000001819 ; 0.0000057059446590 ; 0.0000177862020792
	26 ; 1459.5000000000000000 ; 45.8499984741210938 ; -0.0000177297915798 ; -0.0000060839424805 ; 0.0000000000004405 ; 0.0000052614077504 ; 0.0000158733109856
	27 ; 1477.5000000000000000 ; 47.6500015258789062 ; -0.0000209772551898 ; -0.0000052513223636 ; 0.0000000000002728 ; 0.0000053602252592 ; 0.0000186521738215
	28 ; 1495.5000000000000000 ; 49.4499969482421875 ; -0.0000191772232938 ; -0.0000058390601225 ; 0.0000000000003297 ; 0.0000054037300288 ; 0.0000167445159605
	29 ; 1513.5000000000000000 ; 51.2500000000000000 ; -0.0000168191836565 ; -0.0000053090925576 ; -0.0000000000002984 ; 0.0000057761899370 ; 0.0000171770934685
	30 ; 1531.5000000000000000 ; 53.0499992370605469 ; -0.0000177222900675 ; -0.0000059173848967 ; 0.0000000000002842 ; 0.0000053212825151 ; 0.0000190809423657
	31 ; 1549.5000000000000000 ; 54.8499984741210938 ; -0.0000233138725889 ; -0.0000054613351494 ; 0.0000000000001762 ; 0.0000049035725169 ; 0.0000198446196009
	32 ; 1567.5000000000000000 ; 56.6500015258789062 ; -0.0000170699986484 ; -0.0000058415403146 ; -0.0000000000002842 ; 0.0000058447253650 ; 0.0000181218547368
	33 ; 1585.5000000000000000 ; 58.4499969482421875 ; -0.0000190225309780 ; -0.0000057916049627 ; -0.0000000000001819 ; 0.0000054658848967 ; 0.0000190489154193
	34 ; 1603.5000000000000000 ; 60.2500000000000000 ; -0.0000164120974659 ; -0.0000064123673837 ; -0.0000000000002103 ; 0.0000055593172874 ; 0.0000195869506570
	35 ; 1621.5000000000000000 ; 62.0499992370605469 ; -0.0000183714146260 ; -0.0000056075323300 ; 0.0000000000002274 ; 0.0000058236000768 ; 0.0000167869620782
	36 ; 1639.5000000000000000 ; 63.8499984741210938 ; -0.0000198663092306 ; -0.0000057862098402 ; -0.0000000000001592 ; 0.0000056147819123 ; 0.0000150344631038
	37 ; 1657.5000000000000000 ; 65.6499938964843750 ; -0.0000155505458679 ; -0.0000058536147662 ; -0.0000000000002387 ; 0.0000054383549468 ; 0.0000159710398293
	38 ; 1675.5000000000000000 ; 67.4499969482421875 ; -0.0000202997307497 ; -0.0000061690971052 ; -0.0000000000001677 ; 0.0000060827524067 ; 0.0000202806349989
	39 ; 1693.5000000000000000 ; 69.2500000000000000 ; -0.0000165943711181 ; -0.0000061980322243 ; 0.0000000000002956 ; 0.0000052458026403 ; 0.0000188992817129
	40 ; 1711.5000000000000000 ; 71.0500030517578125 ; -0.0000209392273973 ; -0.0000058184778027 ; -0.0000000000003524 ; 0.0000053121721066 ; 0.0000186263732758
	41 ; 1729.5000000000000000 ; 72.8500061035156250 ; -0.0000154990048031 ; -0.0000055458049246 ; -0.0000000000001705 ; 0.0000049214822866 ; 0.0000229930610658
	42 ; 1747.5000000000000000 ; 74.6500015258789062 ; -0.0000242416699621 ; -0.0000054717447711 ; -0.0000000000002956 ; 0.0000059214971770 ; 0.0000171999017766
	43 ; 1765.5000000000000000 ; 76.4499969482421875 ; -0.0000192852694454 ; -0.0000055427276493 ; -0.0000000000005116 ; 0.0000051398847063 ; 0.0000219018020289
	44 ; 1783.5000000000000000 ; 78.2500000000000000 ; -0.0000172543259396 ; -0.0000066323846113 ; -0.0000000000001933 ; 0.0000058551850088 ; 0.0000183142146852
	45 ; 1801.5000000000000000 ; 80.0499954223632812 ; -0.0000209453901334 ; -0.0000056522148952 ; -0.0000000000002530 ; 0.0000059860976762 ; 0.0000177691963472
	46 ; 1819.5000000000000000 ; 81.8499984741210938 ; -0.0000172641339304 ; -0.0000061855525928 ; 0.0000000000003240 ; 0.0000070808973760 ; 0.0000159387054737
	47 ; 1837.5000000000000000 ; 83.6499938964843750 ; -0.0000236373944063 ; -0.0000057582501540 ; 0.0000000000002160 ; 0.0000057648476286 ; 0.0000167803500517
	48 ; 1855.5000000000000000 ; 85.4499969482421875 ; -0.0000165733690665 ; -0.0000050752446441 ; 0.0000000000003411 ; 0.0000057024699345 ; 0.0000194547610590
	49 ; 1874.0000000000000000 ; 87.3000030517578125 ; -0.0000215334075619 ; -0.0000057680153986 ; 0.0000000000002728 ; 0.0000060286452026 ; 0.0000165727924468
	50 ; 1892.5000000000000000 ; 89.1500015258789062 ; -0.0000176015564648 ; -0.0000055786695157 ; -0.0000000000001819 ; 0.0000054642346186 ; 0.0000184384371096
	51 ; 1910.5000000000000000 ; 90.9499969482421875 ; -0.0000239934415731 ; -0.0000057305851442 ; -0.0000000000002217 ; 0.0000058091727624 ; 0.0000208910569199
	52 ; 1928.5000000000000000 ; 92.7500000000000000 ; -0.0000168304413819 ; -0.0000067481023507 ; -0.0000000000002501 ; 0.0000055937953221 ; 0.0000165972287505
	53 ; 1946.5000000000000000 ; 94.5500030517578125 ; -0.0000186632223631 ; -0.0000050227772590 ; 0.0000000000004434 ; 0.0000052706773204 ; 0.0000193509677047
	54 ; 1964.5000000000000000 ; 96.3499984741210938 ; -0.0000221234804485 ; -0.0000065796425588 ; 0.0000000000001833 ; 0.0000062636572693 ; 0.0000162599426403
	55 ; 1982.5000000000000000 ; 98.1499938964843750 ; -0.0000182302792382 ; -0.0000057821052906 ; -0.0000000000003411 ; 0.0000056238823163 ; 0.0000185574390343
	56 ; 2000.5000000000000000 ; 99.9499969482421875 ; -0.0000216534845094 ; -0.0000055722603065 ; -0.0000000000002501 ; 0.0000052458199207 ; 0.0000153870751092
	57 ; 2018.5000000000000000 ; 101.7500000000000000 ; -0.0000164703069458 ; -0.0000065198928496 ; -0.0000000000005116 ; 0.0000060951224441 ; 0.0000230197256315
	58 ; 2036.5000000000000000 ; 103.5500030517578125 ; -0.0000191263297893 ; -0.0000058439427448 ; 0.0000000000003183 ; 0.0000067635874075 ; 0.0000181066789082
	59 ; 2054.5000000000000000 ; 105.3500061035156250 ; -0.0000196384626179 ; -0.0000058536147662 ; 0.0000000000002842 ; 0.0000066000347942 ; 0.0000232088714256
	60 ; 2072.5000000000000000 ; 107.1500015258789062 ; -0.0000196643304662 ; -0.0000063197176132 ; -0.0000000000002842 ; 0.0000065873023232 ; 0.0000185470526048
	61 ; 2090.5000000000000000 ; 108.9499969482421875 ; -0.0000256944804278 ; -0.0000057368051785 ; -0.0000000000004093 ; 0.0000062263352447 ; 0.0000214113133552
	62 ; 2108.5000000000000000 ; 110.7500000000000000 ; -0.0000185852350114 ; -0.0000058019700191 ; 0.0000000000002842 ; 0.0000065093800004 ; 0.0000156274236360
	63 ; 2126.5000000000000000 ; 112.5499954223632812 ; -0.0000216848366108 ; -0.0000054765550885 ; -0.0000000000002501 ; 0.0000068618319347 ; 0.0000190388764167
	64 ; 2144.5000000000000000 ; 114.3499984741210938 ; -0.0000260254873865 ; -0.0000061337423176 ; -0.0000000000002444 ; 0.0000053911071518 ; 0.0000177150850504
	65 ; 2162.5000000000000000 ; 116.1499938964843750 ; -0.0000262447010755 ; -0.0000060832576310 ; -0.0000000000002728 ; 0.0000071604476943 ; 0.0000184390937648
	66 ; 2180.5000000000000000 ; 117.9499969482421875 ; -0.0000186901888810 ; -0.0000061138052843 ; -0.0000000000003922 ; 0.0000063771449277 ; 0.0000169864724739
	67 ; 2198.5000000000000000 ; 119.7500000000000000 ; -0.0000218447548832 ; -0.0000065678177634 ; 0.0000000000002444 ; 0.0000069811821959 ; 0.0000179282033059
	68 ; 2216.5000000000000000 ; 121.5500030517578125 ; -0.0000186876077350 ; -0.0000059173780755 ; -0.0000000000002188 ; 0.0000061362352426 ; 0.0000202239571081
	69 ; 2234.5000000000000000 ; 123.3499984741210938 ; -0.0000220940692088 ; -0.0000068121248660 ; -0.0000000000003638 ; 0.0000067956352723 ; 0.0000188504673133
	70 ; 2252.5000000000000000 ; 125.1500015258789062 ; -0.0000245721475949 ; -0.0000065151998569 ; -0.0000000000002444 ; 0.0000061571499828 ; 0.0000210266898648
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	441 ; 8938.5000000000000000 ; 793.7500000000000000 ; -0.0000200588765438 ; -0.0000069644747782 ; 0.0000000000053205 ; 0.0000076509259088 ; 0.0000252252102655
	442 ; 8956.5000000000000000 ; 795.5500488281250000 ; -0.0000183663614735 ; -0.0000068014232966 ; 0.0000000000043656 ; 0.0000060379206843 ; 0.0000192285770027
	443 ; 8974.5000000000000000 ; 797.3499755859375000 ; -0.0000207528100873 ; -0.0000070592777774 ; -0.0000000000018986 ; 0.0000074597751336 ; 0.0000195331904251
	444 ; 8992.5000000000000000 ; 799.1500244140625000 ; -0.0000223341630772 ; -0.0000077748400145 ; 0.0000000000016030 ; 0.0000072297088991 ; 0.0000263226193056
	445 ; 9010.5000000000000000 ; 800.9499511718750000 ; -0.0000183921492862 ; -0.0000068005974754 ; -0.0000000000010175 ; 0.0000066808602242 ; 0.0000236235810007
	446 ; 9028.5000000000000000 ; 802.7500000000000000 ; -0.0000184619129868 ; -0.0000081827347458 ; 0.0000000000025921 ; 0.0000070038377089 ; 0.0000201796283363
	447 ; 9046.5000000000000000 ; 804.5500488281250000 ; -0.0000214795873035 ; -0.0000067373703132 ; 0.0000000000037062 ; 0.0000063759289333 ; 0.0000207019438676
	448 ; 9064.5000000000000000 ; 806.3499755859375000 ; -0.0000240199915424 ; -0.0000070568503361 ; 0.0000000000025011 ; 0.0000075068501246 ; 0.0000192821989913
	449 ; 9082.5000000000000000 ; 808.1500244140625000 ; -0.0000176704816113 ; -0.0000072033617471 ; 0.0000000000015689 ; 0.0000072318894127 ; 0.0000226530137297
	450 ; 9100.5000000000000000 ; 809.9499511718750000 ; -0.0000233840510191 ; -0.0000065275153247 ; -0.0000000000035016 ; 0.0000084722814790 ; 0.0000205391479540
	451 ; 9118.5000000000000000 ; 811.7500000000000000 ; -0.0000214949213841 ; -0.0000088723409135 ; 0.0000000000047748 ; 0.0000070353089541 ; 0.0000230436635320
	452 ; 9136.5000000000000000 ; 813.5499877929687500 ; -0.0000195957163669 ; -0.0000074267672971 ; -0.0000000000017280 ; 0.0000084889688878 ; 0.0000223501101573
	453 ; 9154.5000000000000000 ; 815.3499755859375000 ; -0.0000204450116144 ; -0.0000071902027230 ; -0.0000000000009209 ; 0.0000070286514529 ; 0.0000226164047490
	454 ; 9172.5000000000000000 ; 817.1500244140625000 ; -0.0000187157238543 ; -0.0000068815779741 ; 0.0000000000003524 ; 0.0000063051247707 ; 0.0000255548438872
	455 ; 9190.5000000000000000 ; 818.9499511718750000 ; -0.0000185017979675 ; -0.0000069645998337 ; 0.0000000000018872 ; 0.0000069998022809 ; 0.0000198506022571
	456 ; 9208.5000000000000000 ; 820.7500000000000000 ; -0.0000221754253289 ; -0.0000074389763540 ; 0.0000000000024329 ; 0.0000072529082900 ; 0.0000218406094064
	457 ; 9226.5000000000000000 ; 822.5499877929687500 ; -0.0000204640728043 ; -0.0000064131991167 ; 0.0000000000010459 ; 0.0000066577686084 ; 0.0000216908720176
	458 ; 9244.5000000000000000 ; 824.3499755859375000 ; -0.0000203229028557 ; -0.0000068659524004 ; 0.0000000000004206 ; 0.0000064212349571 ; 0.0000190768550965
	459 ; 9262.5000000000000000 ; 826.1500244140625000 ; -0.0000209800818993 ; -0.0000072149878179 ; 0.0000000000020464 ; 0.0000076214628280 ; 0.0000235282150243
	460 ; 9280.5000000000000000 ; 827.9500732421875000 ; -0.0000211103706533 ; -0.0000072003317655 ; -0.0000000000033197 ; 0.0000068855861173 ; 0.0000228850221902
	461 ; 9298.5000000000000000 ; 829.7500000000000000 ; -0.0000192757834157 ; -0.0000075833049777 ; -0.0000000000013642 ; 0.0000079782284956 ; 0.0000194804269995
	462 ; 9316.5000000000000000 ; 831.5499267578125000 ; -0.0000200278554985 ; -0.0000064008299887 ; -0.0000000000022510 ; 0.0000063798847805 ; 0.0000224351806537
	463 ; 9334.5000000000000000 ; 833.3499755859375000 ; -0.0000185717581189 ; -0.0000068360072873 ; -0.0000000000006139 ; 0.0000063791931098 ; 0.0000219570847548
	464 ; 9352.5000000000000000 ; 835.1500244140625000 ; -0.0000197257959371 ; -0.0000065500721576 ; -0.0000000000010459 ; 0.0000065520280259 ; 0.0000197412100533
	465 ; 9370.5000000000000000 ; 836.9500122070312500 ; -0.0000193003415916 ; -0.0000070328655966 ; -0.0000000000008072 ; 0.0000062841018007 ; 0.0000179155595106
	466 ; 9388.5000000000000000 ; 838.7500000000000000 ; -0.0000198894776986 ; -0.0000073940682341 ; 0.0000000000023192 ; 0.0000074193530963 ; 0.0000203866184165
	467 ; 9406.5000000000000000 ; 840.5500488281250000 ; -0.0000199474488909 ; -0.0000066644029175 ; -0.0000000000022169 ; 0.0000064641471909 ; 0.0000207921093534
	468 ; 9424.5000000000000000 ; 842.3499755859375000 ; -0.0000247220414167 ; -0.0000076768892541 ; 0.0000000000008640 ; 0.0000071469921750 ; 0.0000211923706956
	469 ; 9442.5000000000000000 ; 844.1500244140625000 ; -0.0000225477560889 ; -0.0000070389064604 ; -0.0000000000015348 ; 0.0000061823661781 ; 0.0000199389614863
	470 ; 9460.5000000000000000 ; 845.9499511718750000 ; -0.0000191569324670 ; -0.0000075144998846 ; -0.0000000000006821 ; 0.0000078718494478 ; 0.0000216169464693
	471 ; 9478.5000000000000000 ; 847.7500000000000000 ; -0.0000265553189820 ; -0.0000068439721872 ; -0.0000000000010289 ; 0.0000071373306127 ; 0.0000192674633581
	472 ; 9496.5000000000000000 ; 849.5500488281250000 ; -0.0000168304613908 ; -0.0000066122647695 ; 0.0000000000003581 ; 0.0000070248852353 ; 0.0000192186416825
	473 ; 9514.5000000000000000 ; 851.3499755859375000 ; -0.0000191955987248 ; -0.0000070265873546 ; 0.0000000000010232 ; 0.0000060170532379 ; 0.0000173991174961
	474 ; 9532.5000000000000000 ; 853.1500244140625000 ; -0.0000174274246092 ; -0.0000063682400651 ; 0.0000000000017280 ; 0.0000075735538303 ; 0.0000163611111930
	475 ; 9550.5000000000000000 ; 854.9499511718750000 ; -0.0000197063982341 ; -0.0000063168295128 ; 0.0000000000007901 ; 0.0000067226924330 ; 0.0000163068943948
	476 ; 9568.5000000000000000 ; 856.7500000000000000 ; -0.0000216088246816 ; -0.0000062971903390 ; -0.0000000000003411 ; 0.0000066492748374 ; 0.0000173829939740
	477 ; 9586.5000000000000000 ; 858.5500488281250000 ; -0.0000234023955272 ; -0.0000060075899455 ; 0.0000000000010914 ; 0.0000063929310272 ; 0.0000191485996766
	478 ; 9604.5000000000000000 ; 860.3499755859375000 ; -0.0000203595263883 ; -0.0000063084721660 ; 0.0000000000010800 ; 0.0000056636590671 ; 0.0000201179736905
	479 ; 9622.5000000000000000 ; 862.1500244140625000 ; -0.0000197184253921 ; -0.0000072992252171 ; 0.0000000000008299 ; 0.0000067843448051 ; 0.0000182100939128
	480 ; 9640.5000000000000000 ; 863.9499511718750000 ; -0.0000197307708731 ; -0.0000071658123488 ; -0.0000000000017167 ; 0.0000077017502917 ; 0.0000190666905837
	481 ; 9658.5000000000000000 ; 865.7500000000000000 ; -0.0000173165008164 ; -0.0000067470386966 ; -0.0000000000016371 ; 0.0000065835847636 ; 0.0000223799470405
	482 ; 9676.5000000000000000 ; 867.5499877929687500 ; -0.0000202883220481 ; -0.0000070247033364 ; 0.0000000000013188 ; 0.0000070516125561 ; 0.0000243584618147
	483 ; 9694.5000000000000000 ; 869.3499755859375000 ; -0.0000204888092412 ; -0.0000064508676587 ; 0.0000000000009436 ; 0.0000060579695855 ; 0.0000232202673942
	484 ; 9712.5000000000000000 ; 871.1500244140625000 ; -0.0000217114902625 ; -0.0000076490923675 ; -0.0000000000010232 ; 0.0000073023015830 ; 0.0000188913763850
	485 ; 9731.0000000000000000 ; 873.0000000000000000 ; -0.0000185922672244 ; -0.0000068619056037 ; -0.0000000000004889 ; 0.0000075848502092 ; 0.0000174826946022
\end{filecontents}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d50_v800_P.dtabxlbl.d\endcsname{deviation table, x axis label and unit}
\expandafter\def\csname oct2tex.air_d50_v800_P.dtabxlbl.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.air_d50_v800_P.dtabxlbl.v\endcsname{Time}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d50_v800_P.dtabylbl.d\endcsname{deviation table, y axis label and unit}
\expandafter\def\csname oct2tex.air_d50_v800_P.dtabylbl.u\endcsname{\ensuremath{\text{V}}}
\expandafter\def\csname oct2tex.air_d50_v800_P.dtabylbl.v\endcsname{Deviation}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d50_v800_P.dtabmin.d\endcsname{deviation table, minimum}
\expandafter\def\csname oct2tex.air_d50_v800_P.dtabmin.u\endcsname{\ensuremath{\text{V}}}
\expandafter\def\csname oct2tex.air_d50_v800_P.dtabmin.v\endcsname{-0.0000639315403532}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d50_v800_P.dtabmax.d\endcsname{deviation table, maximum}
\expandafter\def\csname oct2tex.air_d50_v800_P.dtabmax.u\endcsname{\ensuremath{\text{V}}}
\expandafter\def\csname oct2tex.air_d50_v800_P.dtabmax.v\endcsname{0.0000669742003083}
%
% analysis results, air, D = 70 mm
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d70_v800_P.t0.d\endcsname{time, pulse trigger event}
\expandafter\def\csname oct2tex.air_d70_v800_P.t0.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.air_d70_v800_P.t0.v\endcsname{1.0000000000000000}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d70_v800_P.t0a.d\endcsname{time, pulse trigger event, lower limit}
\expandafter\def\csname oct2tex.air_d70_v800_P.t0a.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.air_d70_v800_P.t0a.v\endcsname{0.5000000000000000}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d70_v800_P.t0b.d\endcsname{time, pulse trigger event, upper limit}
\expandafter\def\csname oct2tex.air_d70_v800_P.t0b.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.air_d70_v800_P.t0b.v\endcsname{1.2000000476837158}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d70_v800_P.t1.d\endcsname{time-of-flight, first appearance of wave}
\expandafter\def\csname oct2tex.air_d70_v800_P.t1.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.air_d70_v800_P.t1.v\endcsname{201.9303131103515625}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d70_v800_P.t1a.d\endcsname{time-of-flight, first appearance of wave, lower limit}
\expandafter\def\csname oct2tex.air_d70_v800_P.t1a.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.air_d70_v800_P.t1a.v\endcsname{192.5456237792968750}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d70_v800_P.t1b.d\endcsname{time-of-flight, first appearance of wave, upper limit}
\expandafter\def\csname oct2tex.air_d70_v800_P.t1b.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.air_d70_v800_P.t1b.v\endcsname{202.2360076904296875}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d70_v800_P.t2.d\endcsname{time-of-flight, first reflection of wave}
\expandafter\def\csname oct2tex.air_d70_v800_P.t2.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.air_d70_v800_P.t2.v\endcsname{603.7909545898437500}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d70_v800_P.t2a.d\endcsname{time-of-flight, first reflection of wave, lower limit}
\expandafter\def\csname oct2tex.air_d70_v800_P.t2a.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.air_d70_v800_P.t2a.v\endcsname{576.6368408203125000}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d70_v800_P.t2b.d\endcsname{time-of-flight, first reflection of wave, upper limit}
\expandafter\def\csname oct2tex.air_d70_v800_P.t2b.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.air_d70_v800_P.t2b.v\endcsname{604.3081054687500000}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d70_v800_P.t3.d\endcsname{time-of-flight, second reflection of wave}
\expandafter\def\csname oct2tex.air_d70_v800_P.t3.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.air_d70_v800_P.t3.v\endcsname{1005.6515502929687500}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d70_v800_P.t3a.d\endcsname{time-of-flight, second reflection of wave, lower limit}
\expandafter\def\csname oct2tex.air_d70_v800_P.t3a.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.air_d70_v800_P.t3a.v\endcsname{960.7280883789062500}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d70_v800_P.t3b.d\endcsname{time-of-flight, second reflection of wave, upper limit}
\expandafter\def\csname oct2tex.air_d70_v800_P.t3b.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.air_d70_v800_P.t3b.v\endcsname{1006.3800659179687500}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d70_v800_P.umd.d\endcsname{ultrasonic measuring distance}
\expandafter\def\csname oct2tex.air_d70_v800_P.umd.u\endcsname{\ensuremath{\text{mm}}}
\expandafter\def\csname oct2tex.air_d70_v800_P.umd.v\endcsname{69.2000000000000028}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d70_v800_P.umda.d\endcsname{ultrasonic measuring distance, lower limit}
\expandafter\def\csname oct2tex.air_d70_v800_P.umda.u\endcsname{\ensuremath{\text{mm}}}
\expandafter\def\csname oct2tex.air_d70_v800_P.umda.v\endcsname{66.1899999999999977}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d70_v800_P.umdb.d\endcsname{ultrasonic measuring distance, upper limit}
\expandafter\def\csname oct2tex.air_d70_v800_P.umdb.u\endcsname{\ensuremath{\text{mm}}}
\expandafter\def\csname oct2tex.air_d70_v800_P.umdb.v\endcsname{69.1899999999999977}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d70_v800_P.cs.d\endcsname{speed of sound}
\expandafter\def\csname oct2tex.air_d70_v800_P.cs.u\endcsname{\ensuremath{m/Sec}}
\expandafter\def\csname oct2tex.air_d70_v800_P.cs.v\endcsname{344.3979999999999677}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d70_v800_P.csa.d\endcsname{speed of sound, lower limit}
\expandafter\def\csname oct2tex.air_d70_v800_P.csa.u\endcsname{\ensuremath{m/Sec}}
\expandafter\def\csname oct2tex.air_d70_v800_P.csa.v\endcsname{344.6577015999999958}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d70_v800_P.csb.d\endcsname{speed of sound, upper limit}
\expandafter\def\csname oct2tex.air_d70_v800_P.csb.u\endcsname{\ensuremath{m/Sec}}
\expandafter\def\csname oct2tex.air_d70_v800_P.csb.v\endcsname{344.1671799999999735}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d70_v800_P.tm.d\endcsname{environment temperature}
\expandafter\def\csname oct2tex.air_d70_v800_P.tm.u\endcsname{\ensuremath{{}^{\circ} \text{Celsius}}}
\expandafter\def\csname oct2tex.air_d70_v800_P.tm.v\endcsname{20.3000000000000007}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d70_v800_P.tma.d\endcsname{environment temperature, lower limit}
\expandafter\def\csname oct2tex.air_d70_v800_P.tma.u\endcsname{\ensuremath{{}^{\circ} \text{Celsius}}}
\expandafter\def\csname oct2tex.air_d70_v800_P.tma.v\endcsname{20.0000000000000000}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d70_v800_P.tmb.d\endcsname{environment temperature, upper limit}
\expandafter\def\csname oct2tex.air_d70_v800_P.tmb.u\endcsname{\ensuremath{{}^{\circ} \text{Celsius}}}
\expandafter\def\csname oct2tex.air_d70_v800_P.tmb.v\endcsname{20.6000000000000014}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d70_v800_P.hu.d\endcsname{humidity}
\expandafter\def\csname oct2tex.air_d70_v800_P.hu.u\endcsname{\ensuremath{\%}}
\expandafter\def\csname oct2tex.air_d70_v800_P.hu.v\endcsname{70.0000000000000000}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d70_v800_P.hua.d\endcsname{humidity, lower limit}
\expandafter\def\csname oct2tex.air_d70_v800_P.hua.u\endcsname{\ensuremath{\%}}
\expandafter\def\csname oct2tex.air_d70_v800_P.hua.v\endcsname{66.7180000000000035}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d70_v800_P.hub.d\endcsname{humidity, upper limit}
\expandafter\def\csname oct2tex.air_d70_v800_P.hub.u\endcsname{\ensuremath{\%}}
\expandafter\def\csname oct2tex.air_d70_v800_P.hub.v\endcsname{73.2819999999999965}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d70_v800_P.stab.d\endcsname{signal table, c1=sample index, c2=time signature, c3=ensemble average}
\expandafter\def\csname oct2tex.air_d70_v800_P.stab.u\endcsname{\ensuremath{\text{V}}}
\begin{filecontents}[overwrite]{oct2tex.air_d70_v800_P.stab.v}
	idx ; c1 ; c2 ; c3
	1 ; 1013.0000000000000000 ; 1.2000000476837158 ; -0.0075112818740308
	2 ; 1038.0000000000000000 ; 3.7000000476837158 ; -0.0067934566177428
	3 ; 1063.0000000000000000 ; 6.1999998092651367 ; -0.0048552560620010
	4 ; 1088.0000000000000000 ; 8.6999998092651367 ; -0.0000073499550126
	5 ; 1113.0000000000000000 ; 11.1999998092651367 ; -0.0000060497395680
	6 ; 1138.0000000000000000 ; 13.6999998092651367 ; -0.0000037240220081
	7 ; 1163.0000000000000000 ; 16.2000007629394531 ; -0.0000018988448574
	8 ; 1188.0000000000000000 ; 18.7000007629394531 ; 0.0000039124033719
	9 ; 1213.0000000000000000 ; 21.2000007629394531 ; 0.0000025267422643
	10 ; 1238.0000000000000000 ; 23.7000007629394531 ; 0.0000061160435507
	11 ; 1263.0000000000000000 ; 26.2000007629394531 ; 0.0000032775624277
	12 ; 1288.0000000000000000 ; 28.7000007629394531 ; 0.0000036194014683
	13 ; 1313.0000000000000000 ; 31.1999988555908203 ; 0.0000037903275825
	14 ; 1338.0000000000000000 ; 33.7000007629394531 ; 0.0000033263900150
	15 ; 1363.0000000000000000 ; 36.2000007629394531 ; 0.0000040344953049
	16 ; 1388.0000000000000000 ; 38.6999969482421875 ; 0.0000031737999961
	17 ; 1413.0000000000000000 ; 41.1999969482421875 ; 0.0000032653570088
	18 ; 1438.0000000000000000 ; 43.7000007629394531 ; 0.0000033264047943
	19 ; 1463.0000000000000000 ; 46.2000007629394531 ; 0.0000038635798774
	20 ; 1488.0000000000000000 ; 48.7000007629394531 ; 0.0000027342873636
	21 ; 1513.0000000000000000 ; 51.1999969482421875 ; 0.0000020933275664
	22 ; 1538.0000000000000000 ; 53.7000007629394531 ; 0.0000026671350497
	23 ; 1563.0000000000000000 ; 56.2000007629394531 ; 0.0000039429328353
	24 ; 1588.0000000000000000 ; 58.7000007629394531 ; 0.0000026060997698
	25 ; 1613.0000000000000000 ; 61.2000007629394531 ; 0.0000034057550238
	26 ; 1638.0000000000000000 ; 63.7000045776367188 ; 0.0000034607051020
	27 ; 1663.0000000000000000 ; 66.1999969482421875 ; 0.0000033325122786
	28 ; 1688.0000000000000000 ; 68.6999969482421875 ; 0.0000036194128370
	29 ; 1713.0000000000000000 ; 71.1999969482421875 ; 0.0000028502649911
	30 ; 1738.0000000000000000 ; 73.6999969482421875 ; 0.0000036682399696
	31 ; 1763.0000000000000000 ; 76.1999969482421875 ; 0.0000034118700114
	32 ; 1788.0000000000000000 ; 78.6999969482421875 ; 0.0000021849002678
	33 ; 1813.0000000000000000 ; 81.1999969482421875 ; 0.0000030150927159
	34 ; 1838.0000000000000000 ; 83.6999969482421875 ; 0.0000032104173897
	35 ; 1863.0000000000000000 ; 86.1999969482421875 ; 0.0000036865574202
	36 ; 1888.0000000000000000 ; 88.6999969482421875 ; 0.0000040161776269
	37 ; 1913.0000000000000000 ; 91.1999969482421875 ; 0.0000027770176985
	38 ; 1938.0000000000000000 ; 93.6999969482421875 ; 0.0000039551423470
	39 ; 1963.0000000000000000 ; 96.1999969482421875 ; 0.0000033447045098
	40 ; 1988.0000000000000000 ; 98.6999969482421875 ; 0.0000031615825264
	41 ; 2013.0000000000000000 ; 101.1999969482421875 ; 0.0000023436148240
	42 ; 2038.0000000000000000 ; 103.6999969482421875 ; 0.0000023375000637
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\end{filecontents}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d70_v800_P.stabxlbl.d\endcsname{signal table, x axis label and unit}
\expandafter\def\csname oct2tex.air_d70_v800_P.stabxlbl.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.air_d70_v800_P.stabxlbl.v\endcsname{Time}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d70_v800_P.stabylbl.d\endcsname{signal table, y axis label and unit}
\expandafter\def\csname oct2tex.air_d70_v800_P.stabylbl.u\endcsname{\ensuremath{\text{V}}}
\expandafter\def\csname oct2tex.air_d70_v800_P.stabylbl.v\endcsname{Amplitude}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d70_v800_P.stabmin.d\endcsname{signal table, minimum}
\expandafter\def\csname oct2tex.air_d70_v800_P.stabmin.u\endcsname{\ensuremath{\text{V}}}
\expandafter\def\csname oct2tex.air_d70_v800_P.stabmin.v\endcsname{-0.0075112818740308}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d70_v800_P.stabmax.d\endcsname{signal table, maximum}
\expandafter\def\csname oct2tex.air_d70_v800_P.stabmax.u\endcsname{\ensuremath{\text{V}}}
\expandafter\def\csname oct2tex.air_d70_v800_P.stabmax.v\endcsname{0.0009696737979539}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d70_v800_P.dtab.d\endcsname{deviation table, c1=sample index, c2=time signature, c3=min, c4=q25, c5=mean, c6=q75, c7=max}
\expandafter\def\csname oct2tex.air_d70_v800_P.dtab.u\endcsname{\ensuremath{\text{V}}}
\begin{filecontents}[overwrite]{oct2tex.air_d70_v800_P.dtab.v}
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\end{filecontents}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d70_v800_P.dtabxlbl.d\endcsname{deviation table, x axis label and unit}
\expandafter\def\csname oct2tex.air_d70_v800_P.dtabxlbl.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.air_d70_v800_P.dtabxlbl.v\endcsname{Time}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d70_v800_P.dtabylbl.d\endcsname{deviation table, y axis label and unit}
\expandafter\def\csname oct2tex.air_d70_v800_P.dtabylbl.u\endcsname{\ensuremath{\text{V}}}
\expandafter\def\csname oct2tex.air_d70_v800_P.dtabylbl.v\endcsname{Deviation}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d70_v800_P.dtabmin.d\endcsname{deviation table, minimum}
\expandafter\def\csname oct2tex.air_d70_v800_P.dtabmin.u\endcsname{\ensuremath{\text{V}}}
\expandafter\def\csname oct2tex.air_d70_v800_P.dtabmin.v\endcsname{-0.0001167496884591}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.air_d70_v800_P.dtabmax.d\endcsname{deviation table, maximum}
\expandafter\def\csname oct2tex.air_d70_v800_P.dtabmax.u\endcsname{\ensuremath{\text{V}}}
\expandafter\def\csname oct2tex.air_d70_v800_P.dtabmax.v\endcsname{0.0001846746599767}
%
% analysis results, water, D = 25 mm
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d25_v800_P.t0.d\endcsname{time, pulse trigger event}
\expandafter\def\csname oct2tex.water_d25_v800_P.t0.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.water_d25_v800_P.t0.v\endcsname{1.0000000000000000}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d25_v800_P.t0a.d\endcsname{time, pulse trigger event, lower limit}
\expandafter\def\csname oct2tex.water_d25_v800_P.t0a.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.water_d25_v800_P.t0a.v\endcsname{0.5000000000000000}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d25_v800_P.t0b.d\endcsname{time, pulse trigger event, upper limit}
\expandafter\def\csname oct2tex.water_d25_v800_P.t0b.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.water_d25_v800_P.t0b.v\endcsname{1.2000000476837158}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d25_v800_P.t1.d\endcsname{time-of-flight, first appearance of wave}
\expandafter\def\csname oct2tex.water_d25_v800_P.t1.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.water_d25_v800_P.t1.v\endcsname{17.4609050750732422}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d25_v800_P.t1a.d\endcsname{time-of-flight, first appearance of wave, lower limit}
\expandafter\def\csname oct2tex.water_d25_v800_P.t1a.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.water_d25_v800_P.t1a.v\endcsname{16.2712326049804688}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d25_v800_P.t1b.d\endcsname{time-of-flight, first appearance of wave, upper limit}
\expandafter\def\csname oct2tex.water_d25_v800_P.t1b.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.water_d25_v800_P.t1b.v\endcsname{17.6628227233886719}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d25_v800_P.t2.d\endcsname{time-of-flight, first reflection of wave}
\expandafter\def\csname oct2tex.water_d25_v800_P.t2.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.water_d25_v800_P.t2.v\endcsname{50.3827171325683594}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d25_v800_P.t2a.d\endcsname{time-of-flight, first reflection of wave, lower limit}
\expandafter\def\csname oct2tex.water_d25_v800_P.t2a.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.water_d25_v800_P.t2a.v\endcsname{47.8136978149414062}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d25_v800_P.t2b.d\endcsname{time-of-flight, first reflection of wave, upper limit}
\expandafter\def\csname oct2tex.water_d25_v800_P.t2b.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.water_d25_v800_P.t2b.v\endcsname{50.5884666442871094}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d25_v800_P.t3.d\endcsname{time-of-flight, second reflection of wave}
\expandafter\def\csname oct2tex.water_d25_v800_P.t3.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.water_d25_v800_P.t3.v\endcsname{83.3045272827148438}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d25_v800_P.t3a.d\endcsname{time-of-flight, second reflection of wave, lower limit}
\expandafter\def\csname oct2tex.water_d25_v800_P.t3a.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.water_d25_v800_P.t3a.v\endcsname{79.3561630249023438}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d25_v800_P.t3b.d\endcsname{time-of-flight, second reflection of wave, upper limit}
\expandafter\def\csname oct2tex.water_d25_v800_P.t3b.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.water_d25_v800_P.t3b.v\endcsname{83.5141143798828125}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d25_v800_P.umd.d\endcsname{ultrasonic measuring distance}
\expandafter\def\csname oct2tex.water_d25_v800_P.umd.u\endcsname{\ensuremath{\text{mm}}}
\expandafter\def\csname oct2tex.water_d25_v800_P.umd.v\endcsname{24.3999999999999986}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d25_v800_P.umda.d\endcsname{ultrasonic measuring distance, lower limit}
\expandafter\def\csname oct2tex.water_d25_v800_P.umda.u\endcsname{\ensuremath{\text{mm}}}
\expandafter\def\csname oct2tex.water_d25_v800_P.umda.v\endcsname{23.3899999999999970}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d25_v800_P.umdb.d\endcsname{ultrasonic measuring distance, upper limit}
\expandafter\def\csname oct2tex.water_d25_v800_P.umdb.u\endcsname{\ensuremath{\text{mm}}}
\expandafter\def\csname oct2tex.water_d25_v800_P.umdb.v\endcsname{24.3899999999999970}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d25_v800_P.cs.d\endcsname{speed of sound}
\expandafter\def\csname oct2tex.water_d25_v800_P.cs.u\endcsname{\ensuremath{m/Sec}}
\expandafter\def\csname oct2tex.water_d25_v800_P.cs.v\endcsname{1482.2999999999999545}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d25_v800_P.csa.d\endcsname{speed of sound, lower limit}
\expandafter\def\csname oct2tex.water_d25_v800_P.csa.u\endcsname{\ensuremath{m/Sec}}
\expandafter\def\csname oct2tex.water_d25_v800_P.csa.v\endcsname{1483.0799999999999272}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d25_v800_P.csb.d\endcsname{speed of sound, upper limit}
\expandafter\def\csname oct2tex.water_d25_v800_P.csb.u\endcsname{\ensuremath{m/Sec}}
\expandafter\def\csname oct2tex.water_d25_v800_P.csb.v\endcsname{1481.5199999999999818}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d25_v800_P.tm.d\endcsname{environment temperature}
\expandafter\def\csname oct2tex.water_d25_v800_P.tm.u\endcsname{\ensuremath{{}^{\circ} \text{Celsius}}}
\expandafter\def\csname oct2tex.water_d25_v800_P.tm.v\endcsname{20.5000000000000000}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d25_v800_P.tma.d\endcsname{environment temperature, lower limit}
\expandafter\def\csname oct2tex.water_d25_v800_P.tma.u\endcsname{\ensuremath{{}^{\circ} \text{Celsius}}}
\expandafter\def\csname oct2tex.water_d25_v800_P.tma.v\endcsname{20.1999999999999993}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d25_v800_P.tmb.d\endcsname{environment temperature, upper limit}
\expandafter\def\csname oct2tex.water_d25_v800_P.tmb.u\endcsname{\ensuremath{{}^{\circ} \text{Celsius}}}
\expandafter\def\csname oct2tex.water_d25_v800_P.tmb.v\endcsname{20.8000000000000007}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d25_v800_P.hu.d\endcsname{humidity}
\expandafter\def\csname oct2tex.water_d25_v800_P.hu.u\endcsname{\ensuremath{\%}}
\expandafter\def\csname oct2tex.water_d25_v800_P.hu.v\endcsname{70.0000000000000000}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d25_v800_P.hua.d\endcsname{humidity, lower limit}
\expandafter\def\csname oct2tex.water_d25_v800_P.hua.u\endcsname{\ensuremath{\%}}
\expandafter\def\csname oct2tex.water_d25_v800_P.hua.v\endcsname{66.7300000000000040}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d25_v800_P.hub.d\endcsname{humidity, upper limit}
\expandafter\def\csname oct2tex.water_d25_v800_P.hub.u\endcsname{\ensuremath{\%}}
\expandafter\def\csname oct2tex.water_d25_v800_P.hub.v\endcsname{73.2699999999999960}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d25_v800_P.stab.d\endcsname{signal table, c1=sample index, c2=time signature, c3=ensemble average}
\expandafter\def\csname oct2tex.water_d25_v800_P.stab.u\endcsname{\ensuremath{\text{V}}}
\begin{filecontents}[overwrite]{oct2tex.water_d25_v800_P.stab.v}
	idx ; c1 ; c2 ; c3
	1 ; 1001.5000000000000000 ; 0.0500000007450581 ; 0.0000047743401410
	2 ; 1003.5000000000000000 ; 0.2500000000000000 ; 0.0000017222149609
	3 ; 1005.5000000000000000 ; 0.4499999880790710 ; -0.0000027949324704
	4 ; 1007.5000000000000000 ; 0.6499999761581421 ; -0.0000005974048918
	5 ; 1009.5000000000000000 ; 0.8500000238418579 ; 0.0000007455349760
	6 ; 1011.5000000000000000 ; 1.0499999523162842 ; -0.0000024286748612
	7 ; 1013.5000000000000000 ; 1.2500000000000000 ; 0.0004052138538100
	8 ; 1015.5000000000000000 ; 1.4500000476837158 ; 0.0008438660879619
	9 ; 1017.5000000000000000 ; 1.6499999761581421 ; -0.0006675489712507
	10 ; 1019.5000000000000000 ; 1.8499999046325684 ; 0.0013794538099319
	11 ; 1021.5000000000000000 ; 2.0500001907348633 ; -0.0018009884515777
	12 ; 1023.5000000000000000 ; 2.2500000000000000 ; 0.0019426333019510
	13 ; 1025.5000000000000000 ; 2.4500000476837158 ; -0.0003992056008428
	14 ; 1027.5000000000000000 ; 2.6500000953674316 ; -0.0000433272361988
	15 ; 1029.5000000000000000 ; 2.8499999046325684 ; 0.0002418638032395
	16 ; 1031.5000000000000000 ; 3.0499999523162842 ; 0.0000656948759570
	17 ; 1033.5000000000000000 ; 3.2500000000000000 ; 0.0000859610299813
	18 ; 1035.5000000000000000 ; 3.4499998092651367 ; -0.0002815155312419
	19 ; 1037.5000000000000000 ; 3.6500000953674316 ; 0.0002773906162474
	20 ; 1039.5000000000000000 ; 3.8499999046325684 ; -0.0000403971935157
	21 ; 1041.5000000000000000 ; 4.0500001907348633 ; -0.0003315704525448
	22 ; 1043.5000000000000000 ; 4.2500000000000000 ; 0.0002098775003105
	23 ; 1045.5000000000000000 ; 4.4499998092651367 ; 0.0013237829552963
	24 ; 1047.5000000000000000 ; 4.6499996185302734 ; -0.0009504203917459
	25 ; 1049.5000000000000000 ; 4.8500003814697266 ; 0.0000238196480495
	26 ; 1051.5000000000000000 ; 5.0500001907348633 ; 0.0003237830242142
	27 ; 1053.5000000000000000 ; 5.2500000000000000 ; -0.0000319733007927
	28 ; 1055.5000000000000000 ; 5.4499998092651367 ; -0.0000355137744918
	29 ; 1057.5000000000000000 ; 5.6500000953674316 ; -0.0000316070545523
	30 ; 1059.5000000000000000 ; 5.8500003814697266 ; 0.0000074602321547
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	304 ; 1607.5000000000000000 ; 60.6500015258789062 ; -0.0046883029863238
	305 ; 1609.5000000000000000 ; 60.8499984741210938 ; -0.0048495782539248
	306 ; 1611.5000000000000000 ; 61.0499992370605469 ; -0.0034150767605752
	307 ; 1613.5000000000000000 ; 61.2500000000000000 ; -0.0018843723228201
	308 ; 1615.5000000000000000 ; 61.4500045776367188 ; -0.0017097903182730
	309 ; 1617.5000000000000000 ; 61.6500015258789062 ; -0.0020781219936907
	310 ; 1619.5000000000000000 ; 61.8499984741210938 ; -0.0028048946987838
	311 ; 1621.5000000000000000 ; 62.0499992370605469 ; -0.0038487236015499
	312 ; 1623.5000000000000000 ; 62.2500000000000000 ; -0.0041479547508061
	313 ; 1625.5000000000000000 ; 62.4500045776367188 ; -0.0038095344789326
	314 ; 1627.5000000000000000 ; 62.6499938964843750 ; -0.0027698567137122
	315 ; 1629.5000000000000000 ; 62.8499984741210938 ; -0.0016132211312652
	316 ; 1631.5000000000000000 ; 63.0499992370605469 ; -0.0003705155686475
	317 ; 1633.5000000000000000 ; 63.2500000000000000 ; 0.0001930297294166
	318 ; 1635.5000000000000000 ; 63.4500045776367188 ; -0.0012483084574342
	319 ; 1637.5000000000000000 ; 63.6499977111816406 ; -0.0027305451221764
	320 ; 1639.5000000000000000 ; 63.8499984741210938 ; -0.0037769370246679
	321 ; 1641.5000000000000000 ; 64.0500030517578125 ; -0.0040067019872367
	322 ; 1643.5000000000000000 ; 64.2500000000000000 ; -0.0037702224217355
	323 ; 1645.5000000000000000 ; 64.4499969482421875 ; -0.0028161269146949
	324 ; 1647.5000000000000000 ; 64.6499938964843750 ; -0.0017854835605249
	325 ; 1649.5000000000000000 ; 64.8499984741210938 ; -0.0011894633062184
	326 ; 1651.5000000000000000 ; 65.0500030517578125 ; -0.0013856542063877
	327 ; 1653.5000000000000000 ; 65.2500000000000000 ; -0.0021763998083770
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	329 ; 1657.5000000000000000 ; 65.6499938964843750 ; -0.0033463425934315
	330 ; 1659.5000000000000000 ; 65.8499984741210938 ; -0.0034243552945554
	331 ; 1661.5000000000000000 ; 66.0500030517578125 ; -0.0031225604470819
	332 ; 1663.5000000000000000 ; 66.2500000000000000 ; -0.0022895731963217
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	334 ; 1667.5000000000000000 ; 66.6499938964843750 ; -0.0014460864476860
	335 ; 1669.5000000000000000 ; 66.8500061035156250 ; -0.0015439988346770
	336 ; 1671.5000000000000000 ; 67.0500030517578125 ; -0.0021007072646171
	337 ; 1673.5000000000000000 ; 67.2500000000000000 ; -0.0024810028262436
	338 ; 1675.5000000000000000 ; 67.4499969482421875 ; -0.0027210223488510
	339 ; 1677.5000000000000000 ; 67.6499938964843750 ; -0.0031496635638177
	340 ; 1679.5000000000000000 ; 67.8500061035156250 ; -0.0035337433218956
	341 ; 1681.5000000000000000 ; 68.0500030517578125 ; -0.0036387373693287
	342 ; 1683.5000000000000000 ; 68.2500000000000000 ; -0.0035956401843578
	343 ; 1685.5000000000000000 ; 68.4499969482421875 ; -0.0034022578038275
	344 ; 1687.5000000000000000 ; 68.6499938964843750 ; -0.0030482108704746
	345 ; 1689.5000000000000000 ; 68.8500061035156250 ; -0.0025157970376313
	346 ; 1691.5000000000000000 ; 69.0500030517578125 ; -0.0022501398343593
	347 ; 1693.5000000000000000 ; 69.2500000000000000 ; -0.0024427906610072
	348 ; 1695.5000000000000000 ; 69.4499969482421875 ; -0.0025826997589320
	349 ; 1697.5000000000000000 ; 69.6499938964843750 ; -0.0028283353894949
	350 ; 1699.5000000000000000 ; 69.8500061035156250 ; -0.0029247826896608
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	352 ; 1703.5000000000000000 ; 70.2500000000000000 ; -0.0021091308444738
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	354 ; 1707.5000000000000000 ; 70.6499938964843750 ; -0.0014224018668756
	355 ; 1709.5000000000000000 ; 70.8500061035156250 ; -0.0014687944203615
	356 ; 1711.5000000000000000 ; 71.0500030517578125 ; -0.0021669992711395
	357 ; 1713.5000000000000000 ; 71.2500000000000000 ; -0.0027719319332391
	358 ; 1715.5000000000000000 ; 71.4499969482421875 ; -0.0029717851430178
	359 ; 1717.5000000000000000 ; 71.6499938964843750 ; -0.0030859350226820
	360 ; 1719.5000000000000000 ; 71.8500061035156250 ; -0.0031051025725901
	361 ; 1721.5000000000000000 ; 72.0500030517578125 ; -0.0027492241933942
	362 ; 1723.5000000000000000 ; 72.2500000000000000 ; -0.0020797085016966
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	366 ; 1731.5000000000000000 ; 73.0500030517578125 ; -0.0014272851403803
	367 ; 1733.5000000000000000 ; 73.2500000000000000 ; -0.0015956409042701
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	369 ; 1737.5000000000000000 ; 73.6500015258789062 ; -0.0015812348574400
	370 ; 1739.5000000000000000 ; 73.8500061035156250 ; -0.0018182020867243
	371 ; 1741.5000000000000000 ; 74.0500030517578125 ; -0.0017530085751787
	372 ; 1743.5000000000000000 ; 74.2500000000000000 ; -0.0014658642467111
	373 ; 1745.5000000000000000 ; 74.4499969482421875 ; -0.0015847751637921
	374 ; 1747.5000000000000000 ; 74.6500015258789062 ; -0.0017118662362918
	375 ; 1749.5000000000000000 ; 74.8500061035156250 ; -0.0018238183110952
	376 ; 1751.5000000000000000 ; 75.0500030517578125 ; -0.0021485649049282
	377 ; 1753.5000000000000000 ; 75.2500000000000000 ; -0.0023564759176224
	378 ; 1755.5000000000000000 ; 75.4499969482421875 ; -0.0022724810987711
	379 ; 1757.5000000000000000 ; 75.6500015258789062 ; -0.0017880471423268
	380 ; 1759.5000000000000000 ; 75.8500061035156250 ; -0.0012054564431310
	381 ; 1761.5000000000000000 ; 76.0500030517578125 ; -0.0005588931380771
	382 ; 1763.5000000000000000 ; 76.2500000000000000 ; 0.0003704195842147
	383 ; 1765.5000000000000000 ; 76.4499969482421875 ; 0.0004440369957592
	384 ; 1767.5000000000000000 ; 76.6500015258789062 ; 0.0002383233513683
	385 ; 1769.5000000000000000 ; 76.8500061035156250 ; -0.0002866430731956
	386 ; 1771.5000000000000000 ; 77.0500030517578125 ; -0.0006583925569430
	387 ; 1773.5000000000000000 ; 77.2500000000000000 ; -0.0008164928294718
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	389 ; 1777.5000000000000000 ; 77.6500015258789062 ; -0.0003077638102695
	390 ; 1779.5000000000000000 ; 77.8499984741210938 ; 0.0002771464642137
	391 ; 1781.5000000000000000 ; 78.0500030517578125 ; 0.0005005624843761
	392 ; 1783.5000000000000000 ; 78.2500000000000000 ; 0.0005371879087761
	393 ; 1785.5000000000000000 ; 78.4499969482421875 ; 0.0002908199385274
	394 ; 1787.5000000000000000 ; 78.6500015258789062 ; -0.0003553770657163
	395 ; 1789.5000000000000000 ; 78.8499984741210938 ; -0.0004470630665310
	396 ; 1791.5000000000000000 ; 79.0500030517578125 ; -0.0004318024148233
	397 ; 1793.5000000000000000 ; 79.2500000000000000 ; -0.0003380409325473
	398 ; 1795.5000000000000000 ; 79.4499969482421875 ; 0.0003019297146238
	399 ; 1797.5000000000000000 ; 79.6500015258789062 ; 0.0006176420720294
	400 ; 1799.5000000000000000 ; 79.8499908447265625 ; 0.0006215487956069
	401 ; 1801.5000000000000000 ; 80.0500030517578125 ; 0.0004718723648693
	402 ; 1803.5000000000000000 ; 80.2500000000000000 ; 0.0002683563507162
	403 ; 1805.5000000000000000 ; 80.4499969482421875 ; -0.0002763879601844
	404 ; 1807.5000000000000000 ; 80.6500091552734375 ; -0.0004567077849060
	405 ; 1809.5000000000000000 ; 80.8499908447265625 ; -0.0004109258297831
	406 ; 1811.5000000000000000 ; 81.0500030517578125 ; 0.0001706880721031
	407 ; 1813.5000000000000000 ; 81.2500000000000000 ; 0.0006954104173928
	408 ; 1815.5000000000000000 ; 81.4499969482421875 ; 0.0010660608531907
	409 ; 1817.5000000000000000 ; 81.6500015258789062 ; 0.0012203768128529
	410 ; 1819.5000000000000000 ; 81.8499984741210938 ; 0.0012146385852247
	411 ; 1821.5000000000000000 ; 82.0500030517578125 ; 0.0009962286567315
	412 ; 1823.5000000000000000 ; 82.2500000000000000 ; 0.0007018810138106
	413 ; 1825.5000000000000000 ; 82.4499969482421875 ; 0.0006620810599998
	414 ; 1827.5000000000000000 ; 82.6500015258789062 ; 0.0006932129617780
	415 ; 1829.5000000000000000 ; 82.8499984741210938 ; 0.0007752541569062
	416 ; 1831.5000000000000000 ; 83.0500030517578125 ; 0.0009340869146399
	417 ; 1833.5000000000000000 ; 83.2500000000000000 ; 0.0010401790495962
	418 ; 1835.5000000000000000 ; 83.4499969482421875 ; 0.0011421202216297
	419 ; 1837.5000000000000000 ; 83.6500015258789062 ; 0.0013519849162549
	420 ; 1839.5000000000000000 ; 83.8499984741210938 ; 0.0017983282450587
	421 ; 1841.5000000000000000 ; 84.0500030517578125 ; 0.0025681981351227
	422 ; 1843.5000000000000000 ; 84.2500000000000000 ; 0.0037458322476596
	423 ; 1845.5000000000000000 ; 84.4499969482421875 ; 0.0052599329501390
	424 ; 1847.5000000000000000 ; 84.6499938964843750 ; 0.0064151035621762
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	426 ; 1851.5000000000000000 ; 85.0500030517578125 ; 0.0067656091414392
	427 ; 1853.5000000000000000 ; 85.2500000000000000 ; 0.0055489079095423
	428 ; 1855.5000000000000000 ; 85.4499969482421875 ; 0.0031222202815115
	429 ; 1857.5000000000000000 ; 85.6499938964843750 ; -0.0007084475364536
	430 ; 1859.5000000000000000 ; 85.8499984741210938 ; -0.0032818820327520
	431 ; 1861.5000000000000000 ; 86.0500030517578125 ; -0.0051254918798804
	432 ; 1863.5000000000000000 ; 86.2500000000000000 ; -0.0050283116288483
	433 ; 1865.5000000000000000 ; 86.4499969482421875 ; -0.0030754352919757
	434 ; 1867.5000000000000000 ; 86.6499938964843750 ; -0.0014476734213531
	435 ; 1869.5000000000000000 ; 86.8499984741210938 ; 0.0027243446093053
	436 ; 1871.5000000000000000 ; 87.0500030517578125 ; 0.0036987066268921
	437 ; 1873.5000000000000000 ; 87.2500000000000000 ; 0.0013543043751270
	438 ; 1875.5000000000000000 ; 87.4499969482421875 ; -0.0004071414005011
	439 ; 1877.5000000000000000 ; 87.6499938964843750 ; 0.0005332812434062
	440 ; 1879.5000000000000000 ; 87.8499984741210938 ; -0.0005182387540117
	441 ; 1881.5000000000000000 ; 88.0500030517578125 ; 0.0056237471289933
	442 ; 1883.5000000000000000 ; 88.2500000000000000 ; 0.0079311579465866
	443 ; 1885.5000000000000000 ; 88.4499969482421875 ; 0.0075913942418993
	444 ; 1887.5000000000000000 ; 88.6499938964843750 ; 0.0077780624851584
	445 ; 1889.5000000000000000 ; 88.8500061035156250 ; 0.0061598224565387
	446 ; 1891.5000000000000000 ; 89.0500030517578125 ; 0.0031189243309200
	447 ; 1893.5000000000000000 ; 89.2500000000000000 ; 0.0013196321669966
	448 ; 1895.5000000000000000 ; 89.4499969482421875 ; 0.0002298995386809
	449 ; 1897.5000000000000000 ; 89.6499938964843750 ; 0.0011417540954426
	450 ; 1899.5000000000000000 ; 89.8500061035156250 ; 0.0012408872134984
	451 ; 1901.5000000000000000 ; 90.0500030517578125 ; 0.0019473939901218
	452 ; 1903.5000000000000000 ; 90.2500000000000000 ; 0.0022441835608333
	453 ; 1905.5000000000000000 ; 90.4499969482421875 ; 0.0014334158040583
	454 ; 1907.5000000000000000 ; 90.6499938964843750 ; 0.0012339281383902
	455 ; 1909.5000000000000000 ; 90.8500061035156250 ; 0.0011365043465048
	456 ; 1911.5000000000000000 ; 91.0500030517578125 ; 0.0013457584427670
	457 ; 1913.5000000000000000 ; 91.2500000000000000 ; 0.0027259320486337
	458 ; 1915.5000000000000000 ; 91.4499969482421875 ; 0.0024342706892639
	459 ; 1917.5000000000000000 ; 91.6499938964843750 ; 0.0010328538483009
	460 ; 1919.5000000000000000 ; 91.8500061035156250 ; 0.0020052627660334
	461 ; 1921.5000000000000000 ; 92.0500030517578125 ; 0.0020284592173994
	462 ; 1923.5000000000000000 ; 92.2500000000000000 ; 0.0020368830300868
	463 ; 1925.5000000000000000 ; 92.4499969482421875 ; 0.0041842395439744
	464 ; 1927.5000000000000000 ; 92.6499938964843750 ; 0.0050464058294892
	465 ; 1929.5000000000000000 ; 92.8500061035156250 ; 0.0045935912057757
	466 ; 1931.5000000000000000 ; 93.0500030517578125 ; 0.0034479438327253
	467 ; 1933.5000000000000000 ; 93.2500000000000000 ; 0.0029245647601783
	468 ; 1935.5000000000000000 ; 93.4499969482421875 ; 0.0017940548714250
	469 ; 1937.5000000000000000 ; 93.6499938964843750 ; 0.0002543164882809
	470 ; 1939.5000000000000000 ; 93.8500061035156250 ; 0.0001720310974633
	471 ; 1941.5000000000000000 ; 94.0500030517578125 ; 0.0009929321240634
	472 ; 1943.5000000000000000 ; 94.2500000000000000 ; 0.0018027236219496
	473 ; 1945.5000000000000000 ; 94.4499969482421875 ; 0.0028592492453754
	474 ; 1947.5000000000000000 ; 94.6500015258789062 ; 0.0038822006899863
	475 ; 1949.5000000000000000 ; 94.8500061035156250 ; 0.0041192905046046
	476 ; 1951.5000000000000000 ; 95.0500030517578125 ; 0.0037669513840228
	477 ; 1953.5000000000000000 ; 95.2500000000000000 ; 0.0028115136083215
	478 ; 1955.5000000000000000 ; 95.4499969482421875 ; 0.0020782698411494
	479 ; 1957.5000000000000000 ; 95.6500015258789062 ; 0.0016556105110794
	480 ; 1959.5000000000000000 ; 95.8500061035156250 ; 0.0012664030073211
	481 ; 1961.5000000000000000 ; 96.0500030517578125 ; 0.0012936277780682
	482 ; 1963.5000000000000000 ; 96.2500000000000000 ; 0.0016492623835802
	483 ; 1965.5000000000000000 ; 96.4499969482421875 ; 0.0017953986534849
	484 ; 1967.5000000000000000 ; 96.6500015258789062 ; 0.0017840443179011
	485 ; 1969.5000000000000000 ; 96.8500061035156250 ; 0.0016984628746286
	486 ; 1971.5000000000000000 ; 97.0500030517578125 ; 0.0013837269507349
	487 ; 1973.5000000000000000 ; 97.2500000000000000 ; 0.0007675627712160
	488 ; 1975.5000000000000000 ; 97.4499969482421875 ; 0.0002413754991721
	489 ; 1977.5000000000000000 ; 97.6500015258789062 ; 0.0006169097032398
	490 ; 1979.5000000000000000 ; 97.8500061035156250 ; 0.0014649131335318
	491 ; 1981.5000000000000000 ; 98.0500030517578125 ; 0.0023518626112491
	492 ; 1983.5000000000000000 ; 98.2500000000000000 ; 0.0031546954996884
	493 ; 1985.5000000000000000 ; 98.4499969482421875 ; 0.0035525714047253
	494 ; 1987.5000000000000000 ; 98.6500015258789062 ; 0.0034397647250444
	495 ; 1989.5000000000000000 ; 98.8499984741210938 ; 0.0026283855549991
	496 ; 1991.5000000000000000 ; 99.0500030517578125 ; 0.0016863762866706
	497 ; 1993.5000000000000000 ; 99.2500000000000000 ; 0.0008724340004846
	498 ; 1995.5000000000000000 ; 99.4499969482421875 ; 0.0001297896378674
\end{filecontents}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d25_v800_P.stabxlbl.d\endcsname{signal table, x axis label and unit}
\expandafter\def\csname oct2tex.water_d25_v800_P.stabxlbl.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.water_d25_v800_P.stabxlbl.v\endcsname{Time}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d25_v800_P.stabylbl.d\endcsname{signal table, y axis label and unit}
\expandafter\def\csname oct2tex.water_d25_v800_P.stabylbl.u\endcsname{\ensuremath{\text{V}}}
\expandafter\def\csname oct2tex.water_d25_v800_P.stabylbl.v\endcsname{Amplitude}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d25_v800_P.stabmin.d\endcsname{signal table, minimum}
\expandafter\def\csname oct2tex.water_d25_v800_P.stabmin.u\endcsname{\ensuremath{\text{V}}}
\expandafter\def\csname oct2tex.water_d25_v800_P.stabmin.v\endcsname{-0.0956094488501549}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d25_v800_P.stabmax.d\endcsname{signal table, maximum}
\expandafter\def\csname oct2tex.water_d25_v800_P.stabmax.u\endcsname{\ensuremath{\text{V}}}
\expandafter\def\csname oct2tex.water_d25_v800_P.stabmax.v\endcsname{0.1093069538474083}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d25_v800_P.dtab.d\endcsname{deviation table, c1=sample index, c2=time signature, c3=min, c4=q25, c5=mean, c6=q75, c7=max}
\expandafter\def\csname oct2tex.water_d25_v800_P.dtab.u\endcsname{\ensuremath{\text{V}}}
\begin{filecontents}[overwrite]{oct2tex.water_d25_v800_P.dtab.v}
	idx ; c1 ; c2 ; c3 ; c4 ; c5 ; c6 ; c7
	1 ; 1001.5000000000000000 ; 0.0500000007450581 ; -0.0000216085591092 ; -0.0000085752908490 ; 0.0000000000002728 ; 0.0000096995599961 ; 0.0000293823595712
	2 ; 1003.5000000000000000 ; 0.2500000000000000 ; -0.0000250405155384 ; -0.0000100131655927 ; -0.0000000000006366 ; 0.0000086658847067 ; 0.0000278196839645
	3 ; 1005.5000000000000000 ; 0.4499999880790710 ; -0.0000348344728991 ; -0.0000104228174678 ; 0.0000000000002274 ; 0.0000095150780908 ; 0.0000363819308404
	4 ; 1007.5000000000000000 ; 0.6499999761581421 ; -0.0000348154972016 ; -0.0000111634471978 ; -0.0000000000002728 ; 0.0000105432554847 ; 0.0000338995014317
	5 ; 1009.5000000000000000 ; 0.8500000238418579 ; -0.0000280058338831 ; -0.0000107130845208 ; 0.0000000000003638 ; 0.0000100061151898 ; 0.0000455220651929
	6 ; 1011.5000000000000000 ; 1.0499999523162842 ; -0.0000337166347890 ; -0.0000128834844872 ; -0.0000000000001592 ; 0.0000093658145488 ; 0.0000364904663002
	7 ; 1013.5000000000000000 ; 1.2500000000000000 ; -0.0002648484660313 ; -0.0001157172519015 ; 0.0000000000174623 ; 0.0000855768594192 ; 0.0005246740183793
	8 ; 1015.5000000000000000 ; 1.4500000476837158 ; -0.0005215503042564 ; -0.0001956668274943 ; 0.0000000000640284 ; 0.0001532174646854 ; 0.0003854995011352
	9 ; 1017.5000000000000000 ; 1.6499999761581421 ; -0.0002334345481358 ; -0.0000784270523582 ; 0.0000000000130967 ; 0.0000483354669996 ; 0.0002866538707167
	10 ; 1019.5000000000000000 ; 1.8499999046325684 ; -0.0003271145978943 ; -0.0000995016598608 ; 0.0000000001135049 ; 0.0000944809289649 ; 0.0003423193702474
	11 ; 1021.5000000000000000 ; 2.0500001907348633 ; -0.0024132663384080 ; -0.0009192795259878 ; 0.0000000003055902 ; 0.0008278496097773 ; 0.0029951145406812
	12 ; 1023.5000000000000000 ; 2.2500000000000000 ; -0.0017601049039513 ; -0.0006484917830676 ; -0.0000000002386514 ; 0.0005162120796740 ; 0.0014751480193809
	13 ; 1025.5000000000000000 ; 2.4500000476837158 ; -0.0005383979878388 ; -0.0001251124485862 ; -0.0000000000502041 ; 0.0001507106062490 ; 0.0004391384718474
	14 ; 1027.5000000000000000 ; 2.6500000953674316 ; -0.0003057090507355 ; -0.0001043470474542 ; -0.0000000000029104 ; 0.0000978152093012 ; 0.0003169310512021
	15 ; 1029.5000000000000000 ; 2.8499999046325684 ; -0.0001588349987287 ; -0.0000441996526206 ; 0.0000000000425644 ; 0.0000415177055402 ; 0.0001475554890931
	16 ; 1031.5000000000000000 ; 3.0499999523162842 ; -0.0000508492739755 ; -0.0000169692757481 ; -0.0000000000004547 ; 0.0000179606249731 ; 0.0000451259256806
	17 ; 1033.5000000000000000 ; 3.2500000000000000 ; -0.0001505332766101 ; -0.0000383993174182 ; -0.0000000000078217 ; 0.0000351339331246 ; 0.0001204905347549
	18 ; 1035.5000000000000000 ; 3.4499998092651367 ; -0.0001506607804913 ; -0.0000771545746829 ; 0.0000000000316504 ; 0.0000446132326033 ; 0.0002131586370524
	19 ; 1037.5000000000000000 ; 3.6500000953674316 ; -0.0000673932227073 ; -0.0000219693174586 ; 0.0000000000283762 ; 0.0000244121765718 ; 0.0000633627932984
	20 ; 1039.5000000000000000 ; 3.8499999046325684 ; -0.0000404095917474 ; -0.0000148748440552 ; 0.0000000000037289 ; 0.0000123853942569 ; 0.0000533572092536
	21 ; 1041.5000000000000000 ; 4.0500001907348633 ; -0.0000908769434318 ; -0.0000230654550251 ; 0.0000000000232831 ; 0.0000276026548818 ; 0.0000690817541908
	22 ; 1043.5000000000000000 ; 4.2500000000000000 ; -0.0000625070606475 ; -0.0000217957604036 ; 0.0000000000087311 ; 0.0000234626386373 ; 0.0000894862387213
	23 ; 1045.5000000000000000 ; 4.4499998092651367 ; -0.0012749379966408 ; -0.0004378783633001 ; 0.0000000001207809 ; 0.0004455954185687 ; 0.0012631703866646
	24 ; 1047.5000000000000000 ; 4.6499996185302734 ; -0.0008650193340145 ; -0.0003300011740066 ; -0.0000000000247383 ; 0.0003013638197444 ; 0.0010065905516967
	25 ; 1049.5000000000000000 ; 4.8500003814697266 ; -0.0001806855580071 ; -0.0000871683005244 ; 0.0000000000012733 ; 0.0000816891042632 ; 0.0002008280425798
	26 ; 1051.5000000000000000 ; 5.0500001907348633 ; -0.0001064767275238 ; -0.0000329896138282 ; 0.0000000000109139 ; 0.0000416153197875 ; 0.0000949367822614
	27 ; 1053.5000000000000000 ; 5.2500000000000000 ; -0.0000827921976452 ; -0.0000286975991912 ; -0.0000000000029104 ; 0.0000341599516105 ; 0.0000668571010465
	28 ; 1055.5000000000000000 ; 5.4499998092651367 ; -0.0000304611239699 ; -0.0000082523993115 ; 0.0000000000020918 ; 0.0000069159750637 ; 0.0000406143008149
	29 ; 1057.5000000000000000 ; 5.6500000953674316 ; -0.0000288197370537 ; -0.0000109382963274 ; -0.0000000000026375 ; 0.0000093821545306 ; 0.0000280801541521
	30 ; 1059.5000000000000000 ; 5.8500003814697266 ; -0.0000182308322110 ; -0.0000070342821346 ; -0.0000000000009265 ; 0.0000070706178121 ; 0.0000239075670834
	31 ; 1061.5000000000000000 ; 6.0500001907348633 ; -0.0000306618348986 ; -0.0000093457365438 ; -0.0000000000020009 ; 0.0000100522138382 ; 0.0000290839634545
	32 ; 1063.5000000000000000 ; 6.2500000000000000 ; -0.0000338170284522 ; -0.0000086132786237 ; 0.0000000000019099 ; 0.0000075047046266 ; 0.0000261105542450
	33 ; 1065.5000000000000000 ; 6.4499998092651367 ; -0.0000262640223809 ; -0.0000066789225457 ; -0.0000000000017735 ; 0.0000090836783784 ; 0.0000333542011504
	34 ; 1067.5000000000000000 ; 6.6500000953674316 ; -0.0000376966709155 ; -0.0000094000206445 ; 0.0000000000020009 ; 0.0000123202798932 ; 0.0000277898307104
	35 ; 1069.5000000000000000 ; 6.8499994277954102 ; -0.0000371296009689 ; -0.0000072920502134 ; -0.0000000000002728 ; 0.0000087255502876 ; 0.0000244827006100
	36 ; 1071.5000000000000000 ; 7.0500001907348633 ; -0.0000314974095090 ; -0.0000073842793427 ; 0.0000000000012278 ; 0.0000089724944701 ; 0.0000268511212198
	37 ; 1073.5000000000000000 ; 7.2500000000000000 ; -0.0000254067472270 ; -0.0000095166969913 ; 0.0000000000007049 ; 0.0000076837750385 ; 0.0000259558273683
	38 ; 1075.5000000000000000 ; 7.4499998092651367 ; -0.0000222162525461 ; -0.0000102898957266 ; -0.0000000000000682 ; 0.0000070760552262 ; 0.0000284274065052
	39 ; 1077.5000000000000000 ; 7.6500000953674316 ; -0.0000433397435700 ; -0.0000094678434834 ; 0.0000000000012733 ; 0.0000084000057541 ; 0.0000308935559588
	40 ; 1079.5000000000000000 ; 7.8500003814697266 ; -0.0000273844980256 ; -0.0000111987474156 ; 0.0000000000014666 ; 0.0000091623969638 ; 0.0000275809034065
	41 ; 1081.5000000000000000 ; 8.0499992370605469 ; -0.0000273329769698 ; -0.0000069854727371 ; -0.0000000000005116 ; 0.0000058986270233 ; 0.0000255515788012
	42 ; 1083.5000000000000000 ; 8.2500000000000000 ; -0.0000264159862127 ; -0.0000086864865807 ; 0.0000000000008413 ; 0.0000074586132541 ; 0.0000268457824859
	43 ; 1085.5000000000000000 ; 8.4500007629394531 ; -0.0000294002729788 ; -0.0000082225733422 ; -0.0000000000010004 ; 0.0000095096156656 ; 0.0000340243241226
	44 ; 1087.5000000000000000 ; 8.6499996185302734 ; -0.0000233041610045 ; -0.0000077695103755 ; -0.0000000000002956 ; 0.0000072415223258 ; 0.0000253779398918
	45 ; 1089.5000000000000000 ; 8.8499994277954102 ; -0.0000200430986297 ; -0.0000076637006714 ; 0.0000000000005002 ; 0.0000068074496085 ; 0.0000348083995050
	46 ; 1091.5000000000000000 ; 9.0500001907348633 ; -0.0000385431267205 ; -0.0000125498281704 ; -0.0000000000004093 ; 0.0000138748719110 ; 0.0000347948662238
	47 ; 1093.5000000000000000 ; 9.2500000000000000 ; -0.0000283205154119 ; -0.0000105015151348 ; 0.0000000000005457 ; 0.0000100630859379 ; 0.0000308880844386
	48 ; 1095.5000000000000000 ; 9.4499998092651367 ; -0.0000308842718368 ; -0.0000080462050391 ; 0.0000000000001364 ; 0.0000094391252787 ; 0.0000237854947045
	49 ; 1097.5000000000000000 ; 9.6499996185302734 ; -0.0000349130823452 ; -0.0000065893573264 ; 0.0000000000002956 ; 0.0000074178674367 ; 0.0000269325191766
	50 ; 1099.5000000000000000 ; 9.8500003814697266 ; -0.0000240638310061 ; -0.0000082578771980 ; -0.0000000000003638 ; 0.0000071655726970 ; 0.0000268213225354
	51 ; 1101.5000000000000000 ; 10.0499992370605469 ; -0.0000308110902552 ; -0.0000082008800746 ; -0.0000000000001023 ; 0.0000097591700978 ; 0.0000303997094306
	52 ; 1103.5000000000000000 ; 10.2500000000000000 ; -0.0000263888814516 ; -0.0000071997747000 ; 0.0000000000001364 ; 0.0000093387170637 ; 0.0000251365181612
	53 ; 1105.5000000000000000 ; 10.4499998092651367 ; -0.0000330031871272 ; -0.0000055665359469 ; -0.0000000000006594 ; 0.0000078248631326 ; 0.0000276922128251
	54 ; 1107.5000000000000000 ; 10.6499996185302734 ; -0.0000238223183260 ; -0.0000077125423559 ; 0.0000000000001819 ; 0.0000070408073043 ; 0.0000257415085798
	55 ; 1109.5000000000000000 ; 10.8500003814697266 ; -0.0000315598517773 ; -0.0000072866018854 ; 0.0000000000003979 ; 0.0000055974796851 ; 0.0000267589493887
	56 ; 1111.5000000000000000 ; 11.0500001907348633 ; -0.0000224848263315 ; -0.0000101108253148 ; 0.0000000000002046 ; 0.0000095584455266 ; 0.0000280312760879
	57 ; 1113.5000000000000000 ; 11.2500000000000000 ; -0.0000239417640842 ; -0.0000098368145700 ; 0.0000000000003013 ; 0.0000079930778156 ; 0.0000377140349883
	58 ; 1115.5000000000000000 ; 11.4500007629394531 ; -0.0000415952454205 ; -0.0000073978376349 ; -0.0000000000002160 ; 0.0000095855548352 ; 0.0000263709553110
	59 ; 1117.5000000000000000 ; 11.6499996185302734 ; -0.0000251490619121 ; -0.0000096225048765 ; 0.0000000000006821 ; 0.0000078438370110 ; 0.0000371144342353
	60 ; 1119.5000000000000000 ; 11.8500003814697266 ; -0.0000249075692409 ; -0.0000089306904556 ; -0.0000000000003411 ; 0.0000098813097793 ; 0.0000266124097834
	61 ; 1121.5000000000000000 ; 12.0500001907348633 ; -0.0000279704963759 ; -0.0000093348999144 ; 0.0000000000004547 ; 0.0000087011503638 ; 0.0000365013002011
	62 ; 1123.5000000000000000 ; 12.2500000000000000 ; -0.0000338306563208 ; -0.0000072133052527 ; -0.0000000000004349 ; 0.0000100711931736 ; 0.0000358067445632
	63 ; 1125.5000000000000000 ; 12.4499998092651367 ; -0.0000216167100007 ; -0.0000077912391134 ; -0.0000000000002728 ; 0.0000087011394498 ; 0.0000318511920341
	64 ; 1127.5000000000000000 ; 12.6500005722045898 ; -0.0000317497251672 ; -0.0000094108718258 ; 0.0000000000002274 ; 0.0000106110783236 ; 0.0000323422755173
	65 ; 1129.5000000000000000 ; 12.8500003814697266 ; -0.0000341073864547 ; -0.0000074629374467 ; 0.0000000000008299 ; 0.0000081097132352 ; 0.0000212216127693
	66 ; 1131.5000000000000000 ; 13.0499992370605469 ; -0.0000272000779660 ; -0.0000087950284069 ; -0.0000000000002728 ; 0.0000093929702416 ; 0.0000358936231351
	67 ; 1133.5000000000000000 ; 13.2500000000000000 ; -0.0000314242097375 ; -0.0000080733607319 ; -0.0000000000000909 ; 0.0000080255904322 ; 0.0000271875906037
	68 ; 1135.5000000000000000 ; 13.4500007629394531 ; -0.0000372517715732 ; -0.0000097418533187 ; -0.0000000000005002 ; 0.0000080500467448 ; 0.0000360753292625
	69 ; 1137.5000000000000000 ; 13.6499996185302734 ; -0.0000287112397928 ; -0.0000092996397143 ; 0.0000000000003268 ; 0.0000085356596173 ; 0.0000286797603621
	70 ; 1139.5000000000000000 ; 13.8500003814697266 ; -0.0000328024143528 ; -0.0000077668155427 ; -0.0000000000004320 ; 0.0000097483352874 ; 0.0000337313831551
	71 ; 1141.5000000000000000 ; 14.0500001907348633 ; -0.0000263888850895 ; -0.0000087624848675 ; 0.0000000000001535 ; 0.0000082345150076 ; 0.0000333569150825
	72 ; 1143.5000000000000000 ; 14.2500000000000000 ; -0.0000456457128166 ; -0.0000084667526608 ; 0.0000000000001819 ; 0.0000086116351667 ; 0.0000306303954858
	73 ; 1145.5000000000000000 ; 14.4499998092651367 ; -0.0000291914129775 ; -0.0000100213119367 ; 0.0000000000002274 ; 0.0000086251757239 ; 0.0000365012892871
	74 ; 1147.5000000000000000 ; 14.6499996185302734 ; -0.0000267090108537 ; -0.0000080082672866 ; -0.0000000000002501 ; 0.0000085220899564 ; 0.0000276026821666
	75 ; 1149.5000000000000000 ; 14.8500003814697266 ; -0.0000271186672762 ; -0.0000076609521784 ; -0.0000000000003865 ; 0.0000081124471762 ; 0.0000386879983125
	76 ; 1151.5000000000000000 ; 15.0500001907348633 ; -0.0000249211298069 ; -0.0000072974053182 ; -0.0000000000002245 ; 0.0000076376445577 ; 0.0000318891688948
	77 ; 1153.5000000000000000 ; 15.2500000000000000 ; -0.0000345712214767 ; -0.0000097907231975 ; 0.0000000000002217 ; 0.0000095638779385 ; 0.0000291708511213
	78 ; 1155.5000000000000000 ; 15.4500007629394531 ; -0.0000249048534897 ; -0.0000086566697064 ; -0.0000000000000796 ; 0.0000077217800936 ; 0.0000234246290347
	79 ; 1157.5000000000000000 ; 15.6499996185302734 ; -0.0000308110429614 ; -0.0000081113448687 ; 0.0000000000001535 ; 0.0000093495546025 ; 0.0000279118921753
	80 ; 1159.5000000000000000 ; 15.8500003814697266 ; -0.0000363808321708 ; -0.0000097201300377 ; 0.0000000000003638 ; 0.0000093278704298 ; 0.0000226622814807
	81 ; 1161.5000000000000000 ; 16.0499992370605469 ; -0.0000311094481731 ; -0.0000092101399787 ; -0.0000000000001251 ; 0.0000097131051007 ; 0.0000268430594588
	82 ; 1163.5000000000000000 ; 16.2500000000000000 ; -0.0000301952331938 ; -0.0000104960845420 ; 0.0000000000007503 ; 0.0000094960651040 ; 0.0000329472677549
	83 ; 1165.5000000000000000 ; 16.4500007629394531 ; -0.0000413890302298 ; -0.0000090880030257 ; -0.0000000000001705 ; 0.0000111102972369 ; 0.0000236959676840
	84 ; 1167.5000000000000000 ; 16.6500015258789062 ; -0.0000340829028573 ; -0.0000107511350507 ; -0.0000000000005457 ; 0.0000104347491288 ; 0.0000235466995946
	85 ; 1169.5000000000000000 ; 16.8500003814697266 ; -0.0000349999390892 ; -0.0000091151378001 ; -0.0000000000006366 ; 0.0000077434615378 ; 0.0000240404624492
	86 ; 1171.5000000000000000 ; 17.0499992370605469 ; -0.0000241587513301 ; -0.0000072133498179 ; 0.0000000000000796 ; 0.0000074423496699 ; 0.0000235630486713
	87 ; 1173.5000000000000000 ; 17.2500000000000000 ; -0.0000233394039242 ; -0.0000093077542260 ; 0.0000000000003553 ; 0.0000066419597715 ; 0.0000414987080148
	88 ; 1175.5000000000000000 ; 17.4500007629394531 ; -0.0000345604457834 ; -0.0000075415769061 ; -0.0000000000003411 ; 0.0000082318047134 ; 0.0000411405198975
	89 ; 1177.5000000000000000 ; 17.6499996185302734 ; -0.0000370482739527 ; -0.0000090228750196 ; 0.0000000000001592 ; 0.0000102014255390 ; 0.0000321008265018
	90 ; 1179.5000000000000000 ; 17.8499984741210938 ; -0.0000294111141557 ; -0.0000097961246865 ; -0.0000000000000455 ; 0.0000087065754997 ; 0.0000540761247976
	91 ; 1181.5000000000000000 ; 18.0499992370605469 ; -0.0000295304962492 ; -0.0000114673293865 ; -0.0000000000038654 ; 0.0000104618720798 ; 0.0000606741705269
	92 ; 1183.5000000000000000 ; 18.2500000000000000 ; -0.0021607945673168 ; -0.0006828794721514 ; -0.0000000005355105 ; 0.0006813523359597 ; 0.0023197382688522
	93 ; 1185.5000000000000000 ; 18.4500007629394531 ; -0.0048548430204391 ; -0.0015333350747824 ; 0.0000000062398611 ; 0.0013045985251665 ; 0.0053050965070724
	94 ; 1187.5000000000000000 ; 18.6500015258789062 ; -0.0031513869762421 ; -0.0011368226259947 ; 0.0000000054948033 ; 0.0010080430656672 ; 0.0031164735555649
	95 ; 1189.5000000000000000 ; 18.8499984741210938 ; -0.0043937265872955 ; -0.0008685253560543 ; 0.0000000063329937 ; 0.0009371004998684 ; 0.0030462741851807
	96 ; 1191.5000000000000000 ; 19.0499992370605469 ; -0.0064447596669197 ; -0.0014013089239597 ; -0.0000000035390257 ; 0.0013205856084824 ; 0.0039282888174057
	97 ; 1193.5000000000000000 ; 19.2500000000000000 ; -0.0173683334141970 ; -0.0024679847992957 ; 0.0000000005587936 ; 0.0047043021768332 ; 0.0101454798132181
	98 ; 1195.5000000000000000 ; 19.4500007629394531 ; -0.0159896239638329 ; -0.0037461556494236 ; 0.0000000059604646 ; 0.0044607892632484 ; 0.0102720372378826
	99 ; 1197.5000000000000000 ; 19.6500015258789062 ; -0.0084151029586792 ; -0.0044750571250916 ; 0.0000000074505806 ; 0.0044317655265331 ; 0.0140241533517838
	100 ; 1199.5000000000000000 ; 19.8499984741210938 ; -0.0064759999513626 ; -0.0030196346342564 ; 0.0000000128522517 ; 0.0034249052405357 ; 0.0083438307046890
	101 ; 1201.5000000000000000 ; 20.0499992370605469 ; -0.0132356435060501 ; -0.0038038231432438 ; -0.0000000083819032 ; 0.0039086341857910 ; 0.0151369534432888
	102 ; 1203.5000000000000000 ; 20.2500000000000000 ; -0.0181085411459208 ; -0.0042403391562402 ; 0.0000000064261259 ; 0.0054730325937271 ; 0.0170275736600161
	103 ; 1205.5000000000000000 ; 20.4500007629394531 ; -0.0137051902711391 ; -0.0030264109373093 ; -0.0000000062398611 ; 0.0035344250500202 ; 0.0075718313455582
	104 ; 1207.5000000000000000 ; 20.6499996185302734 ; -0.0131570268422365 ; -0.0033719129860401 ; -0.0000000073574484 ; 0.0034308321774006 ; 0.0110646896064281
	105 ; 1209.5000000000000000 ; 20.8500003814697266 ; -0.0067610815167427 ; -0.0017814729362726 ; 0.0000000069849193 ; 0.0018406566232443 ; 0.0070101208984852
	106 ; 1211.5000000000000000 ; 21.0499992370605469 ; -0.0092082945629954 ; -0.0026257084682584 ; 0.0000000067986550 ; 0.0028739245608449 ; 0.0076980777084827
	107 ; 1213.5000000000000000 ; 21.2500000000000000 ; -0.0112170893698931 ; -0.0039046006277204 ; -0.0000000041909516 ; 0.0030822064727545 ; 0.0127751110121608
	108 ; 1215.5000000000000000 ; 21.4500007629394531 ; -0.0142847076058388 ; -0.0053098648786545 ; 0.0000000167638063 ; 0.0051703155040741 ; 0.0209051258862019
	109 ; 1217.5000000000000000 ; 21.6499996185302734 ; -0.0167640168219805 ; -0.0045056929811835 ; -0.0000000006519258 ; 0.0045459251850843 ; 0.0182890798896551
	110 ; 1219.5000000000000000 ; 21.8500003814697266 ; -0.0129025951027870 ; -0.0033878022804856 ; 0.0000000016763806 ; 0.0034442972391844 ; 0.0095659792423248
	111 ; 1221.5000000000000000 ; 22.0499992370605469 ; -0.0059023294597864 ; -0.0032181069254875 ; -0.0000000035390257 ; 0.0022766096517444 ; 0.0068106427788734
	112 ; 1223.5000000000000000 ; 22.2500000000000000 ; -0.0117954015731812 ; -0.0029707252979279 ; -0.0000000139698386 ; 0.0039034523069859 ; 0.0112005621194839
	113 ; 1225.5000000000000000 ; 22.4500007629394531 ; -0.0242133028805256 ; -0.0047667063772678 ; -0.0000000063329937 ; 0.0050182938575745 ; 0.0173249803483486
	114 ; 1227.5000000000000000 ; 22.6499996185302734 ; -0.0188950262963772 ; -0.0059066703543067 ; 0.0000000162050124 ; 0.0041662035509944 ; 0.0182872582226992
	115 ; 1229.5000000000000000 ; 22.8500003814697266 ; -0.0142345316708088 ; -0.0055703241378069 ; 0.0000000019557773 ; 0.0054157655686140 ; 0.0201300047338009
	116 ; 1231.5000000000000000 ; 23.0499992370605469 ; -0.0111683644354343 ; -0.0042129326611757 ; -0.0000000007450581 ; 0.0051636570133269 ; 0.0119252651929855
	117 ; 1233.5000000000000000 ; 23.2500000000000000 ; -0.0083602927625179 ; -0.0023695193231106 ; 0.0000000093132257 ; 0.0019402261823416 ; 0.0069443229585886
	118 ; 1235.5000000000000000 ; 23.4500007629394531 ; -0.0106205679476261 ; -0.0035498905926943 ; -0.0000000052154063 ; 0.0030997898429632 ; 0.0153347402811050
	119 ; 1237.5000000000000000 ; 23.6500015258789062 ; -0.0120971892029047 ; -0.0032103206031024 ; 0.0000000024214386 ; 0.0034674233756959 ; 0.0126616824418306
	120 ; 1239.5000000000000000 ; 23.8499984741210938 ; -0.0116181354969740 ; -0.0035341815091670 ; -0.0000000045634807 ; 0.0033066133037210 ; 0.0086529050022364
	121 ; 1241.5000000000000000 ; 24.0499992370605469 ; -0.0063906912691891 ; -0.0034106182865798 ; 0.0000000000349246 ; 0.0024155625142157 ; 0.0071607786230743
	122 ; 1243.5000000000000000 ; 24.2500000000000000 ; -0.0055730734020472 ; -0.0015227873809636 ; 0.0000000024214386 ; 0.0016844794154167 ; 0.0072556277737021
	123 ; 1245.5000000000000000 ; 24.4500007629394531 ; -0.0063568726181984 ; -0.0012738835066557 ; 0.0000000070780515 ; 0.0014072600752115 ; 0.0037762112915516
	124 ; 1247.5000000000000000 ; 24.6500015258789062 ; -0.0065800454467535 ; -0.0017686886712909 ; 0.0000000004190951 ; 0.0016744323074818 ; 0.0059556756168604
	125 ; 1249.5000000000000000 ; 24.8499984741210938 ; -0.0033911699429154 ; -0.0016755140386522 ; -0.0000000006635673 ; 0.0016308765625581 ; 0.0053208209574223
	126 ; 1251.5000000000000000 ; 25.0499992370605469 ; -0.0035458507481962 ; -0.0014063615817577 ; 0.0000000002124580 ; 0.0017252491088584 ; 0.0036864669527858
	127 ; 1253.5000000000000000 ; 25.2500000000000000 ; -0.0026518320664763 ; -0.0008918922394514 ; -0.0000000006344635 ; 0.0008622281020507 ; 0.0022267040330917
	128 ; 1255.5000000000000000 ; 25.4500007629394531 ; -0.0012242640368640 ; -0.0006168382242322 ; 0.0000000007916242 ; 0.0005319591145962 ; 0.0011845859698951
	129 ; 1257.5000000000000000 ; 25.6499996185302734 ; -0.0014657627325505 ; -0.0003886700724252 ; -0.0000000001353328 ; 0.0004033673903905 ; 0.0008954956429079
	130 ; 1259.5000000000000000 ; 25.8500003814697266 ; -0.0026276586577296 ; -0.0006626157555729 ; -0.0000000001920853 ; 0.0008460319368169 ; 0.0014451150782406
	131 ; 1261.5000000000000000 ; 26.0499992370605469 ; -0.0018168906681240 ; -0.0007503948290832 ; -0.0000000001018634 ; 0.0007254906813614 ; 0.0015575557481498
	132 ; 1263.5000000000000000 ; 26.2500000000000000 ; -0.0004999357042834 ; -0.0002178754657507 ; -0.0000000000203727 ; 0.0001456400204916 ; 0.0009283339604735
	133 ; 1265.5000000000000000 ; 26.4500007629394531 ; -0.0003777439706028 ; -0.0001598109956831 ; 0.0000000005937181 ; 0.0001662187278271 ; 0.0006933198310435
	134 ; 1267.5000000000000000 ; 26.6499996185302734 ; -0.0004516118206084 ; -0.0001946738921106 ; 0.0000000002968591 ; 0.0001252928050235 ; 0.0007497179321945
	135 ; 1269.5000000000000000 ; 26.8500003814697266 ; -0.0003256013151258 ; -0.0001609572209418 ; -0.0000000005704351 ; 0.0001836298033595 ; 0.0004009259864688
	136 ; 1271.5000000000000000 ; 27.0499992370605469 ; -0.0004943411331624 ; -0.0000852583907545 ; 0.0000000002968591 ; 0.0001204881118611 ; 0.0002357447519898
	137 ; 1273.5000000000000000 ; 27.2500000000000000 ; -0.0011040351819247 ; -0.0002693900896702 ; 0.0000000001862645 ; 0.0002624646876939 ; 0.0007907381514087
	138 ; 1275.5000000000000000 ; 27.4500007629394531 ; -0.0010335920378566 ; -0.0004791214014404 ; -0.0000000001324224 ; 0.0004142710822634 ; 0.0008172307861969
	139 ; 1277.5000000000000000 ; 27.6499996185302734 ; -0.0009452782687731 ; -0.0006267523858696 ; 0.0000000002663000 ; 0.0005088517209515 ; 0.0008531293133274
	140 ; 1279.5000000000000000 ; 27.8500003814697266 ; -0.0008939100662246 ; -0.0005834013572894 ; 0.0000000000116415 ; 0.0005183200701140 ; 0.0009085506317206
	141 ; 1281.5000000000000000 ; 28.0499992370605469 ; -0.0006780794356018 ; -0.0004429676337168 ; 0.0000000004627509 ; 0.0003403637092561 ; 0.0008992726216093
	142 ; 1283.5000000000000000 ; 28.2500000000000000 ; -0.0006815739907324 ; -0.0004610309842974 ; 0.0000000004074536 ; 0.0004014169680886 ; 0.0009996318258345
	143 ; 1285.5000000000000000 ; 28.4500007629394531 ; -0.0006328619783744 ; -0.0004668532637879 ; 0.0000000000829459 ; 0.0004244366427884 ; 0.0009506755159236
	144 ; 1287.5000000000000000 ; 28.6500015258789062 ; -0.0010005065705627 ; -0.0003939440939575 ; 0.0000000003899913 ; 0.0003363506984897 ; 0.0008478742092848
	145 ; 1289.5000000000000000 ; 28.8499984741210938 ; -0.0008145468309522 ; -0.0004897132748738 ; -0.0000000001746230 ; 0.0003983699716628 ; 0.0008398218778893
	146 ; 1291.5000000000000000 ; 29.0499992370605469 ; -0.0010222136043012 ; -0.0005846114945598 ; -0.0000000001862645 ; 0.0004788242222276 ; 0.0010763009777293
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	188 ; 1375.5000000000000000 ; 37.4500007629394531 ; -0.0007061349460855 ; -0.0004461883218028 ; -0.0000000001993612 ; 0.0004017884784844 ; 0.0006624187226407
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	384 ; 1767.5000000000000000 ; 76.6500015258789062 ; -0.0009473970276304 ; -0.0006293432670645 ; 0.0000000000378350 ; 0.0006817678222433 ; 0.0010012025013566
	385 ; 1769.5000000000000000 ; 76.8500061035156250 ; -0.0010344438487664 ; -0.0006813625223003 ; 0.0000000000029104 ; 0.0007461067289114 ; 0.0010618028463796
	386 ; 1771.5000000000000000 ; 77.0500030517578125 ; -0.0010028237011284 ; -0.0006473007379100 ; 0.0000000000116415 ; 0.0006922672037035 ; 0.0010201717959717
	387 ; 1773.5000000000000000 ; 77.2500000000000000 ; -0.0008992413058877 ; -0.0006134100258350 ; -0.0000000000960426 ; 0.0006094933487475 ; 0.0011412340682000
	388 ; 1775.5000000000000000 ; 77.4499969482421875 ; -0.0009256117045879 ; -0.0006244056858122 ; 0.0000000000261934 ; 0.0005837334319949 ; 0.0011619885917753
	389 ; 1777.5000000000000000 ; 77.6500015258789062 ; -0.0008520403644070 ; -0.0005661384784617 ; 0.0000000001033186 ; 0.0005538414698094 ; 0.0010671283816919
	390 ; 1779.5000000000000000 ; 77.8499984741210938 ; -0.0007992534083314 ; -0.0005577146075666 ; 0.0000000000451109 ; 0.0005061062402092 ; 0.0010633438359946
	391 ; 1781.5000000000000000 ; 78.0500030517578125 ; -0.0009076651767828 ; -0.0006139714969322 ; -0.0000000000713044 ; 0.0005927865859121 ; 0.0010601480025798
	392 ; 1783.5000000000000000 ; 78.2500000000000000 ; -0.0009503270266578 ; -0.0006363129941747 ; 0.0000000000552973 ; 0.0006177952163853 ; 0.0009707815479487
	393 ; 1785.5000000000000000 ; 78.4499969482421875 ; -0.0010425015352666 ; -0.0006698865909129 ; 0.0000000000378350 ; 0.0006940983585082 ; 0.0011028775479645
	394 ; 1787.5000000000000000 ; 78.6500015258789062 ; -0.0011700262548402 ; -0.0007127384305932 ; -0.0000000000407454 ; 0.0007684483425692 ; 0.0011951741762459
	395 ; 1789.5000000000000000 ; 78.8499984741210938 ; -0.0011388944694772 ; -0.0007206738810055 ; 0.0000000000232831 ; 0.0007629544707015 ; 0.0011689719976857
	396 ; 1791.5000000000000000 ; 79.0500030517578125 ; -0.0010643003042787 ; -0.0006851471262053 ; 0.0000000000232831 ; 0.0006959297461435 ; 0.0011452629696578
	397 ; 1793.5000000000000000 ; 79.2500000000000000 ; -0.0009773757774383 ; -0.0006481797900051 ; -0.0000000000582077 ; 0.0006339104147628 ; 0.0011755401501432
	398 ; 1795.5000000000000000 ; 79.4499969482421875 ; -0.0008801958756521 ; -0.0005705335643142 ; 0.0000000000611180 ; 0.0005811885930598 ; 0.0010090159485117
	399 ; 1797.5000000000000000 ; 79.6500015258789062 ; -0.0007782547618262 ; -0.0005454815109260 ; 0.0000000001222361 ; 0.0005122103611939 ; 0.0008449334418401
	400 ; 1799.5000000000000000 ; 79.8499908447265625 ; -0.0008784866658971 ; -0.0005970016354695 ; 0.0000000001207809 ; 0.0005765303503722 ; 0.0009923364268616
	401 ; 1801.5000000000000000 ; 80.0500030517578125 ; -0.0010276748798788 ; -0.0006607301766053 ; 0.0000000000713044 ; 0.0006763960118406 ; 0.0010433678980917
	402 ; 1803.5000000000000000 ; 80.2500000000000000 ; -0.0011795489117503 ; -0.0007442364003509 ; 0.0000000000552973 ; 0.0007809010567144 ; 0.0011554965749383
	403 ; 1805.5000000000000000 ; 80.4499969482421875 ; -0.0013515669852495 ; -0.0007990525919013 ; -0.0000000000291038 ; 0.0008481700206175 ; 0.0014034516643733
	404 ; 1807.5000000000000000 ; 80.6500091552734375 ; -0.0013272720389068 ; -0.0008191235829145 ; -0.0000000001338776 ; 0.0008537125540897 ; 0.0014409532304853
	405 ; 1809.5000000000000000 ; 80.8499908447265625 ; -0.0012219124473631 ; -0.0007259291014634 ; -0.0000000000611180 ; 0.0007238872349262 ; 0.0012093577533960
	406 ; 1811.5000000000000000 ; 81.0500030517578125 ; -0.0009649230050854 ; -0.0005868929438293 ; 0.0000000000625732 ; 0.0005779953789897 ; 0.0010414905846119
	407 ; 1813.5000000000000000 ; 81.2500000000000000 ; -0.0008117060060613 ; -0.0004859663604293 ; 0.0000000000713044 ; 0.0004567838623188 ; 0.0009065865306184
	408 ; 1815.5000000000000000 ; 81.4499969482421875 ; -0.0006634948076680 ; -0.0003810324997175 ; 0.0000000003215973 ; 0.0003412909572944 ; 0.0006006407202221
	409 ; 1817.5000000000000000 ; 81.6500015258789062 ; -0.0007687862962484 ; -0.0004791892424691 ; 0.0000000000727596 ; 0.0004174723871984 ; 0.0008233244298026
	410 ; 1819.5000000000000000 ; 81.8499984741210938 ; -0.0010165653657168 ; -0.0006325286813080 ; 0.0000000002793968 ; 0.0006044876063243 ; 0.0010777497664094
	411 ; 1821.5000000000000000 ; 82.0500030517578125 ; -0.0011102047283202 ; -0.0006578002939932 ; -0.0000000003376044 ; 0.0006988595123403 ; 0.0011061955010518
	412 ; 1823.5000000000000000 ; 82.2500000000000000 ; -0.0011675846762955 ; -0.0007347139180638 ; -0.0000000001979061 ; 0.0007513562450185 ; 0.0012050846125931
	413 ; 1825.5000000000000000 ; 82.4499969482421875 ; -0.0011553762014955 ; -0.0007542474777438 ; 0.0000000001979061 ; 0.0007562396349385 ; 0.0012563604395837
	414 ; 1827.5000000000000000 ; 82.6500015258789062 ; -0.0010651549091563 ; -0.0006420509889722 ; 0.0000000001484295 ; 0.0006763229612261 ; 0.0010340434964746
	415 ; 1829.5000000000000000 ; 82.8499984741210938 ; -0.0008168336935341 ; -0.0004840727779083 ; 0.0000000000552973 ; 0.0005168794887140 ; 0.0007414511637762
	416 ; 1831.5000000000000000 ; 83.0500030517578125 ; -0.0006233284948394 ; -0.0004262124421075 ; 0.0000000001164153 ; 0.0004054890596308 ; 0.0006015416001901
	417 ; 1833.5000000000000000 ; 83.2500000000000000 ; -0.0006464026519097 ; -0.0004259601992089 ; -0.0000000000465661 ; 0.0003894225810654 ; 0.0006725952262059
	418 ; 1835.5000000000000000 ; 83.4499969482421875 ; -0.0007825277280062 ; -0.0004888341063634 ; 0.0000000000218279 ; 0.0004478525952436 ; 0.0007404284551740
	419 ; 1837.5000000000000000 ; 83.6500015258789062 ; -0.0009826256427914 ; -0.0006156808231026 ; -0.0000000001688022 ; 0.0005407592398115 ; 0.0010042544454336
	420 ; 1839.5000000000000000 ; 83.8499984741210938 ; -0.0011799150379375 ; -0.0006936984718777 ; -0.0000000000261934 ; 0.0006428416818380 ; 0.0011683371849358
	421 ; 1841.5000000000000000 ; 84.0500030517578125 ; -0.0012169070541859 ; -0.0006842979346402 ; -0.0000000003812602 ; 0.0006312245968729 ; 0.0011508788447827
	422 ; 1843.5000000000000000 ; 84.2500000000000000 ; -0.0011170415673405 ; -0.0005729756085202 ; -0.0000000004889443 ; 0.0005714214639738 ; 0.0009870403446257
	423 ; 1845.5000000000000000 ; 84.4499969482421875 ; -0.0010591729078442 ; -0.0005179636646062 ; -0.0000000002561137 ; 0.0005008617881685 ; 0.0009423573501408
	424 ; 1847.5000000000000000 ; 84.6499938964843750 ; -0.0009633363224566 ; -0.0004740022122860 ; -0.0000000004540198 ; 0.0004467726685107 ; 0.0008477410301566
	425 ; 1849.5000000000000000 ; 84.8499984741210938 ; -0.0008938019163907 ; -0.0004699113778770 ; 0.0000000003725290 ; 0.0004321520682424 ; 0.0006299410015345
	426 ; 1851.5000000000000000 ; 85.0500030517578125 ; -0.0012552957050502 ; -0.0006385103333741 ; 0.0000000005587936 ; 0.0006627715192735 ; 0.0010790931992233
	427 ; 1853.5000000000000000 ; 85.2500000000000000 ; -0.0014353576116264 ; -0.0006958902813494 ; 0.0000000005587936 ; 0.0007577948272228 ; 0.0012688352726400
	428 ; 1855.5000000000000000 ; 85.4499969482421875 ; -0.0016305726021528 ; -0.0008218719740398 ; -0.0000000002677552 ; 0.0008768271654844 ; 0.0014544287696481
	429 ; 1857.5000000000000000 ; 85.6499938964843750 ; -0.0019871832337230 ; -0.0011247651418671 ; 0.0000000000931323 ; 0.0012478444259614 ; 0.0021086838096380
	430 ; 1859.5000000000000000 ; 85.8499984741210938 ; -0.0017438675276935 ; -0.0009937676368281 ; 0.0000000001862645 ; 0.0011566467583179 ; 0.0018490083748475
	431 ; 1861.5000000000000000 ; 86.0500030517578125 ; -0.0010277153924108 ; -0.0006023624446243 ; 0.0000000011641532 ; 0.0006910355295986 ; 0.0011919005773962
	432 ; 1863.5000000000000000 ; 86.2500000000000000 ; -0.0009809620678425 ; -0.0006499481387436 ; 0.0000000006170012 ; 0.0005384404212236 ; 0.0016221285331994
	433 ; 1865.5000000000000000 ; 86.4499969482421875 ; -0.0012158651370555 ; -0.0002198965521529 ; -0.0000000004831236 ; 0.0002745778765529 ; 0.0007106559351087
	434 ; 1867.5000000000000000 ; 86.6499938964843750 ; -0.0009196621831506 ; -0.0004514435422607 ; -0.0000000001309672 ; 0.0003982478519902 ; 0.0008123367442749
	435 ; 1869.5000000000000000 ; 86.8499984741210938 ; -0.0021547656506300 ; -0.0009026051848195 ; -0.0000000002910383 ; 0.0009108188096434 ; 0.0019017027225345
	436 ; 1871.5000000000000000 ; 87.0500030517578125 ; -0.0022989478893578 ; -0.0009410430211574 ; -0.0000000003376044 ; 0.0009060059674084 ; 0.0014456142671406
	437 ; 1873.5000000000000000 ; 87.2500000000000000 ; -0.0028709715697914 ; -0.0014362153597176 ; 0.0000000000989530 ; 0.0014531918568537 ; 0.0027792516630143
	438 ; 1875.5000000000000000 ; 87.4499969482421875 ; -0.0037323508877307 ; -0.0021327170543373 ; -0.0000000002793968 ; 0.0019702741410583 ; 0.0042381701059639
	439 ; 1877.5000000000000000 ; 87.6499938964843750 ; -0.0025909761898220 ; -0.0014747997047380 ; 0.0000000000232831 ; 0.0013612832408398 ; 0.0022344072349370
	440 ; 1879.5000000000000000 ; 87.8499984741210938 ; -0.0010270996717736 ; -0.0005051854532212 ; 0.0000000000436557 ; 0.0003814463561866 ; 0.0015792787307873
	441 ; 1881.5000000000000000 ; 88.0500030517578125 ; -0.0013203483540565 ; -0.0004838259192184 ; -0.0000000004889443 ; 0.0004801016766578 ; 0.0015669614076614
	442 ; 1883.5000000000000000 ; 88.2500000000000000 ; -0.0024104695767164 ; -0.0009777182713151 ; -0.0000000005820766 ; 0.0010776408016682 ; 0.0018778303638101
	443 ; 1885.5000000000000000 ; 88.4499969482421875 ; -0.0027739168144763 ; -0.0011888220906258 ; -0.0000000003376044 ; 0.0013218061067164 ; 0.0022957292385399
	444 ; 1887.5000000000000000 ; 88.6499938964843750 ; -0.0017278878949583 ; -0.0006436326075345 ; 0.0000000001047738 ; 0.0005891919136047 ; 0.0020519900135696
	445 ; 1889.5000000000000000 ; 88.8500061035156250 ; -0.0026902852114290 ; -0.0010830117389560 ; 0.0000000002328306 ; 0.0012641635257751 ; 0.0022505251690745
	446 ; 1891.5000000000000000 ; 89.0500030517578125 ; -0.0015881004510447 ; -0.0007198195671663 ; -0.0000000002444722 ; 0.0007312609814107 ; 0.0014507416635752
	447 ; 1893.5000000000000000 ; 89.2500000000000000 ; -0.0017492392798886 ; -0.0009039131109603 ; -0.0000000000698492 ; 0.0009956487920135 ; 0.0020915456116199
	448 ; 1895.5000000000000000 ; 89.4499969482421875 ; -0.0020241343881935 ; -0.0010960127692670 ; 0.0000000000407454 ; 0.0011889098677784 ; 0.0022786261979491
	449 ; 1897.5000000000000000 ; 89.6499938964843750 ; -0.0027313090395182 ; -0.0005089294281788 ; -0.0000000000640284 ; 0.0007334884139709 ; 0.0014683030312881
	450 ; 1899.5000000000000000 ; 89.8500061035156250 ; -0.0020769538823515 ; -0.0008026175200939 ; -0.0000000001658918 ; 0.0008647979702801 ; 0.0016531944274902
	451 ; 1901.5000000000000000 ; 90.0500030517578125 ; -0.0014705996727571 ; -0.0005786966066808 ; 0.0000000003725290 ; 0.0004009911790490 ; 0.0016869799001142
	452 ; 1903.5000000000000000 ; 90.2500000000000000 ; -0.0014939182437956 ; -0.0005556229152717 ; 0.0000000000698492 ; 0.0004989438457415 ; 0.0010727688204497
	453 ; 1905.5000000000000000 ; 90.4499969482421875 ; -0.0017110400367528 ; -0.0008818263886496 ; -0.0000000002459274 ; 0.0006963828345761 ; 0.0017221156740561
	454 ; 1907.5000000000000000 ; 90.6499938964843750 ; -0.0036285782698542 ; -0.0018991624237970 ; 0.0000000002386514 ; 0.0017380493227392 ; 0.0038814370054752
	455 ; 1909.5000000000000000 ; 90.8500061035156250 ; -0.0035018539056182 ; -0.0017699964810163 ; 0.0000000001688022 ; 0.0018177382880822 ; 0.0030866407323629
	456 ; 1911.5000000000000000 ; 91.0500030517578125 ; -0.0013662633718923 ; -0.0007224456057884 ; -0.0000000000494765 ; 0.0006805821321905 ; 0.0011010898742825
	457 ; 1913.5000000000000000 ; 91.2500000000000000 ; -0.0008775563910604 ; -0.0005542774451897 ; -0.0000000002270099 ; 0.0004682405851781 ; 0.0014860027004033
	458 ; 1915.5000000000000000 ; 91.4499969482421875 ; -0.0008880097884685 ; -0.0004551390884444 ; -0.0000000004423782 ; 0.0005248852539808 ; 0.0011708028614521
	459 ; 1917.5000000000000000 ; 91.6499938964843750 ; -0.0008852338651195 ; -0.0003217589692213 ; 0.0000000001775334 ; 0.0002910572802648 ; 0.0009130598045886
	460 ; 1919.5000000000000000 ; 91.8500061035156250 ; -0.0006591103156097 ; -0.0003008118947037 ; 0.0000000000931323 ; 0.0002339213388041 ; 0.0008192982058972
	461 ; 1921.5000000000000000 ; 92.0500030517578125 ; -0.0003355059307069 ; -0.0001595841022208 ; -0.0000000002619345 ; 0.0001175389043055 ; 0.0007770536467433
	462 ; 1923.5000000000000000 ; 92.2500000000000000 ; -0.0002386708511040 ; -0.0000561100896448 ; -0.0000000001746230 ; 0.0000636694021523 ; 0.0002387964632362
	463 ; 1925.5000000000000000 ; 92.4499969482421875 ; -0.0004392617847770 ; -0.0002105799503624 ; 0.0000000002561137 ; 0.0002039510291070 ; 0.0006771883927286
	464 ; 1927.5000000000000000 ; 92.6499938964843750 ; -0.0010348102077842 ; -0.0003936078865081 ; -0.0000000002211891 ; 0.0004932787269354 ; 0.0008167317137122
	465 ; 1929.5000000000000000 ; 92.8500061035156250 ; -0.0010605696588755 ; -0.0003363492432982 ; 0.0000000003725290 ; 0.0004443395882845 ; 0.0007720706053078
	466 ; 1931.5000000000000000 ; 93.0500030517578125 ; -0.0008037027437240 ; -0.0003932414110750 ; -0.0000000000698492 ; 0.0004014113219455 ; 0.0005552470684052
	467 ; 1933.5000000000000000 ; 93.2500000000000000 ; -0.0006799765396863 ; -0.0003862828016281 ; -0.0000000002502930 ; 0.0003928758669645 ; 0.0004534518811852
	468 ; 1935.5000000000000000 ; 93.4499969482421875 ; -0.0005292410496622 ; -0.0001947249402292 ; 0.0000000004627509 ; 0.0002093771472573 ; 0.0003895289264619
	469 ; 1937.5000000000000000 ; 93.6499938964843750 ; -0.0002958308905363 ; -0.0000730606334400 ; 0.0000000000451109 ; 0.0000993752619252 ; 0.0002444910933264
	470 ; 1939.5000000000000000 ; 93.8500061035156250 ; -0.0001781679020496 ; -0.0000959204480750 ; 0.0000000000090949 ; 0.0000923973420868 ; 0.0001917774061440
	471 ; 1941.5000000000000000 ; 94.0500030517578125 ; -0.0003256848431192 ; -0.0000884949695319 ; 0.0000000000713044 ; 0.0001163043780252 ; 0.0003084908239543
	472 ; 1943.5000000000000000 ; 94.2500000000000000 ; -0.0005745408125222 ; -0.0002499868278392 ; -0.0000000002240995 ; 0.0001964977709576 ; 0.0005974664818496
	473 ; 1945.5000000000000000 ; 94.4499969482421875 ; -0.0008588314522058 ; -0.0004280984867364 ; -0.0000000003550667 ; 0.0004072167212144 ; 0.0007566658314317
	474 ; 1947.5000000000000000 ; 94.6500015258789062 ; -0.0009783522691578 ; -0.0004953288007528 ; 0.0000000002037268 ; 0.0004732653032988 ; 0.0007490967400372
	475 ; 1949.5000000000000000 ; 94.8500061035156250 ; -0.0011128906626254 ; -0.0005188672803342 ; -0.0000000001455192 ; 0.0005557294934988 ; 0.0007115183398128
	476 ; 1951.5000000000000000 ; 95.0500030517578125 ; -0.0011316903401166 ; -0.0005034831119701 ; 0.0000000011350494 ; 0.0005653044208884 ; 0.0007873312570155
	477 ; 1953.5000000000000000 ; 95.2500000000000000 ; -0.0009966652141884 ; -0.0004319425206631 ; -0.0000000000902219 ; 0.0004844454815611 ; 0.0006984528154135
	478 ; 1955.5000000000000000 ; 95.4499969482421875 ; -0.0007957130437717 ; -0.0003586916718632 ; -0.0000000003696186 ; 0.0003789449110627 ; 0.0006825596792623
	479 ; 1957.5000000000000000 ; 95.6500015258789062 ; -0.0007999179651961 ; -0.0004614868958015 ; 0.0000000001600711 ; 0.0004735393449664 ; 0.0009826455498114
	480 ; 1959.5000000000000000 ; 95.8500061035156250 ; -0.0008091423078440 ; -0.0005332729197107 ; 0.0000000002153683 ; 0.0005060546100140 ; 0.0012087475042790
	481 ; 1961.5000000000000000 ; 96.0500030517578125 ; -0.0008559006964788 ; -0.0005437805666588 ; 0.0000000002561137 ; 0.0004783738404512 ; 0.0014288672246039
	482 ; 1963.5000000000000000 ; 96.2500000000000000 ; -0.0008445471758023 ; -0.0005129093769938 ; -0.0000000001280569 ; 0.0003980416222475 ; 0.0014499877579510
	483 ; 1965.5000000000000000 ; 96.4499969482421875 ; -0.0006312639452517 ; -0.0003628963022493 ; -0.0000000003812602 ; 0.0003166599199176 ; 0.0009712700266391
	484 ; 1967.5000000000000000 ; 96.6500015258789062 ; -0.0005187585484236 ; -0.0002186459023505 ; 0.0000000000349246 ; 0.0002031340845861 ; 0.0003501193132252
	485 ; 1969.5000000000000000 ; 96.8500061035156250 ; -0.0010834025451913 ; -0.0005418731598184 ; -0.0000000002677552 ; 0.0005319205811247 ; 0.0007924939272925
	486 ; 1971.5000000000000000 ; 97.0500030517578125 ; -0.0015661276411265 ; -0.0005946331657469 ; 0.0000000000349246 ; 0.0006620550993830 ; 0.0009976727887988
	487 ; 1973.5000000000000000 ; 97.2500000000000000 ; -0.0016392567194998 ; -0.0005742449429817 ; 0.0000000000523869 ; 0.0006390868220478 ; 0.0010319788707420
	488 ; 1975.5000000000000000 ; 97.4499969482421875 ; -0.0011472533224151 ; -0.0004092942108400 ; 0.0000000000261934 ; 0.0004116068012081 ; 0.0007182197878137
	489 ; 1977.5000000000000000 ; 97.6500015258789062 ; -0.0004477701149881 ; -0.0001813503477024 ; -0.0000000000669388 ; 0.0001903394877445 ; 0.0003465869231150
	490 ; 1979.5000000000000000 ; 97.8500061035156250 ; -0.0009392847423442 ; -0.0005019022501074 ; 0.0000000004656613 ; 0.0005098913097754 ; 0.0007975702174008
	491 ; 1981.5000000000000000 ; 98.0500030517578125 ; -0.0011230233358219 ; -0.0006075062556192 ; -0.0000000001775334 ; 0.0005767933325842 ; 0.0010054754093289
	492 ; 1983.5000000000000000 ; 98.2500000000000000 ; -0.0011106927413493 ; -0.0005822917446494 ; -0.0000000003434252 ; 0.0005509114125744 ; 0.0010715236421674
	493 ; 1985.5000000000000000 ; 98.4499969482421875 ; -0.0009124265052378 ; -0.0004513784078881 ; -0.0000000004831236 ; 0.0004460755735636 ; 0.0007667988538742
	494 ; 1987.5000000000000000 ; 98.6500015258789062 ; -0.0005505664739758 ; -0.0002544310409576 ; -0.0000000006170012 ; 0.0002446832368150 ; 0.0004462241195142
	495 ; 1989.5000000000000000 ; 98.8499984741210938 ; -0.0003357499372214 ; -0.0000762970885262 ; -0.0000000005471520 ; 0.0000948311062530 ; 0.0002858049701899
	496 ; 1991.5000000000000000 ; 99.0500030517578125 ; -0.0003966707154177 ; -0.0001474784221500 ; -0.0000000001222361 ; 0.0001715057296678 ; 0.0003713864134625
	497 ; 1993.5000000000000000 ; 99.2500000000000000 ; -0.0005181453889236 ; -0.0002147418999812 ; 0.0000000000363798 ; 0.0002948770415969 ; 0.0004501315124799
	498 ; 1995.5000000000000000 ; 99.4499969482421875 ; -0.0005812092567794 ; -0.0002753070730250 ; -0.0000000000189175 ; 0.0003203222877346 ; 0.0006487424252555
\end{filecontents}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d25_v800_P.dtabxlbl.d\endcsname{deviation table, x axis label and unit}
\expandafter\def\csname oct2tex.water_d25_v800_P.dtabxlbl.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.water_d25_v800_P.dtabxlbl.v\endcsname{Time}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d25_v800_P.dtabylbl.d\endcsname{deviation table, y axis label and unit}
\expandafter\def\csname oct2tex.water_d25_v800_P.dtabylbl.u\endcsname{\ensuremath{\text{V}}}
\expandafter\def\csname oct2tex.water_d25_v800_P.dtabylbl.v\endcsname{Deviation}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d25_v800_P.dtabmin.d\endcsname{deviation table, minimum}
\expandafter\def\csname oct2tex.water_d25_v800_P.dtabmin.u\endcsname{\ensuremath{\text{V}}}
\expandafter\def\csname oct2tex.water_d25_v800_P.dtabmin.v\endcsname{-0.0242133028805256}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d25_v800_P.dtabmax.d\endcsname{deviation table, maximum}
\expandafter\def\csname oct2tex.water_d25_v800_P.dtabmax.u\endcsname{\ensuremath{\text{V}}}
\expandafter\def\csname oct2tex.water_d25_v800_P.dtabmax.v\endcsname{0.0209051258862019}
%
% analysis results, water, D = 50 mm
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d50_v800_P.t0.d\endcsname{time, pulse trigger event}
\expandafter\def\csname oct2tex.water_d50_v800_P.t0.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.water_d50_v800_P.t0.v\endcsname{1.0000000000000000}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d50_v800_P.t0a.d\endcsname{time, pulse trigger event, lower limit}
\expandafter\def\csname oct2tex.water_d50_v800_P.t0a.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.water_d50_v800_P.t0a.v\endcsname{0.5000000000000000}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d50_v800_P.t0b.d\endcsname{time, pulse trigger event, upper limit}
\expandafter\def\csname oct2tex.water_d50_v800_P.t0b.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.water_d50_v800_P.t0b.v\endcsname{1.2000000476837158}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d50_v800_P.t1.d\endcsname{time-of-flight, first appearance of wave}
\expandafter\def\csname oct2tex.water_d50_v800_P.t1.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.water_d50_v800_P.t1.v\endcsname{34.8662910461425781}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d50_v800_P.t1a.d\endcsname{time-of-flight, first appearance of wave, lower limit}
\expandafter\def\csname oct2tex.water_d50_v800_P.t1a.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.water_d50_v800_P.t1a.v\endcsname{33.6674652099609375}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d50_v800_P.t1b.d\endcsname{time-of-flight, first appearance of wave, upper limit}
\expandafter\def\csname oct2tex.water_d50_v800_P.t1b.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.water_d50_v800_P.t1b.v\endcsname{35.0773696899414062}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d50_v800_P.t2.d\endcsname{time-of-flight, first reflection of wave}
\expandafter\def\csname oct2tex.water_d50_v800_P.t2.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.water_d50_v800_P.t2.v\endcsname{102.5988693237304688}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d50_v800_P.t2a.d\endcsname{time-of-flight, first reflection of wave, lower limit}
\expandafter\def\csname oct2tex.water_d50_v800_P.t2a.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.water_d50_v800_P.t2a.v\endcsname{100.0023803710937500}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d50_v800_P.t2b.d\endcsname{time-of-flight, first reflection of wave, upper limit}
\expandafter\def\csname oct2tex.water_d50_v800_P.t2b.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.water_d50_v800_P.t2b.v\endcsname{102.8321151733398438}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d50_v800_P.t3.d\endcsname{time-of-flight, second reflection of wave}
\expandafter\def\csname oct2tex.water_d50_v800_P.t3.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.water_d50_v800_P.t3.v\endcsname{170.3314361572265625}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d50_v800_P.t3a.d\endcsname{time-of-flight, second reflection of wave, lower limit}
\expandafter\def\csname oct2tex.water_d50_v800_P.t3a.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.water_d50_v800_P.t3a.v\endcsname{166.3373107910156250}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d50_v800_P.t3b.d\endcsname{time-of-flight, second reflection of wave, upper limit}
\expandafter\def\csname oct2tex.water_d50_v800_P.t3b.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.water_d50_v800_P.t3b.v\endcsname{170.5868377685546875}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d50_v800_P.umd.d\endcsname{ultrasonic measuring distance}
\expandafter\def\csname oct2tex.water_d50_v800_P.umd.u\endcsname{\ensuremath{\text{mm}}}
\expandafter\def\csname oct2tex.water_d50_v800_P.umd.v\endcsname{50.2000000000000028}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d50_v800_P.umda.d\endcsname{ultrasonic measuring distance, lower limit}
\expandafter\def\csname oct2tex.water_d50_v800_P.umda.u\endcsname{\ensuremath{\text{mm}}}
\expandafter\def\csname oct2tex.water_d50_v800_P.umda.v\endcsname{49.1900000000000048}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d50_v800_P.umdb.d\endcsname{ultrasonic measuring distance, upper limit}
\expandafter\def\csname oct2tex.water_d50_v800_P.umdb.u\endcsname{\ensuremath{\text{mm}}}
\expandafter\def\csname oct2tex.water_d50_v800_P.umdb.v\endcsname{50.1900000000000048}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d50_v800_P.cs.d\endcsname{speed of sound}
\expandafter\def\csname oct2tex.water_d50_v800_P.cs.u\endcsname{\ensuremath{m/Sec}}
\expandafter\def\csname oct2tex.water_d50_v800_P.cs.v\endcsname{1482.2999999999999545}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d50_v800_P.csa.d\endcsname{speed of sound, lower limit}
\expandafter\def\csname oct2tex.water_d50_v800_P.csa.u\endcsname{\ensuremath{m/Sec}}
\expandafter\def\csname oct2tex.water_d50_v800_P.csa.v\endcsname{1483.0799999999999272}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d50_v800_P.csb.d\endcsname{speed of sound, upper limit}
\expandafter\def\csname oct2tex.water_d50_v800_P.csb.u\endcsname{\ensuremath{m/Sec}}
\expandafter\def\csname oct2tex.water_d50_v800_P.csb.v\endcsname{1481.5199999999999818}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d50_v800_P.tm.d\endcsname{environment temperature}
\expandafter\def\csname oct2tex.water_d50_v800_P.tm.u\endcsname{\ensuremath{{}^{\circ} \text{Celsius}}}
\expandafter\def\csname oct2tex.water_d50_v800_P.tm.v\endcsname{20.5000000000000000}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d50_v800_P.tma.d\endcsname{environment temperature, lower limit}
\expandafter\def\csname oct2tex.water_d50_v800_P.tma.u\endcsname{\ensuremath{{}^{\circ} \text{Celsius}}}
\expandafter\def\csname oct2tex.water_d50_v800_P.tma.v\endcsname{20.1999999999999993}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d50_v800_P.tmb.d\endcsname{environment temperature, upper limit}
\expandafter\def\csname oct2tex.water_d50_v800_P.tmb.u\endcsname{\ensuremath{{}^{\circ} \text{Celsius}}}
\expandafter\def\csname oct2tex.water_d50_v800_P.tmb.v\endcsname{20.8000000000000007}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d50_v800_P.hu.d\endcsname{humidity}
\expandafter\def\csname oct2tex.water_d50_v800_P.hu.u\endcsname{\ensuremath{\%}}
\expandafter\def\csname oct2tex.water_d50_v800_P.hu.v\endcsname{73.5000000000000000}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d50_v800_P.hua.d\endcsname{humidity, lower limit}
\expandafter\def\csname oct2tex.water_d50_v800_P.hua.u\endcsname{\ensuremath{\%}}
\expandafter\def\csname oct2tex.water_d50_v800_P.hua.v\endcsname{70.2300000000000040}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d50_v800_P.hub.d\endcsname{humidity, upper limit}
\expandafter\def\csname oct2tex.water_d50_v800_P.hub.u\endcsname{\ensuremath{\%}}
\expandafter\def\csname oct2tex.water_d50_v800_P.hub.v\endcsname{76.7699999999999960}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d50_v800_P.stab.d\endcsname{signal table, c1=sample index, c2=time signature, c3=ensemble average}
\expandafter\def\csname oct2tex.water_d50_v800_P.stab.u\endcsname{\ensuremath{\text{V}}}
\begin{filecontents}[overwrite]{oct2tex.water_d50_v800_P.stab.v}
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\end{filecontents}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d50_v800_P.stabxlbl.d\endcsname{signal table, x axis label and unit}
\expandafter\def\csname oct2tex.water_d50_v800_P.stabxlbl.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.water_d50_v800_P.stabxlbl.v\endcsname{Time}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d50_v800_P.stabylbl.d\endcsname{signal table, y axis label and unit}
\expandafter\def\csname oct2tex.water_d50_v800_P.stabylbl.u\endcsname{\ensuremath{\text{V}}}
\expandafter\def\csname oct2tex.water_d50_v800_P.stabylbl.v\endcsname{Amplitude}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d50_v800_P.stabmin.d\endcsname{signal table, minimum}
\expandafter\def\csname oct2tex.water_d50_v800_P.stabmin.u\endcsname{\ensuremath{\text{V}}}
\expandafter\def\csname oct2tex.water_d50_v800_P.stabmin.v\endcsname{-0.0753367543220520}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d50_v800_P.stabmax.d\endcsname{signal table, maximum}
\expandafter\def\csname oct2tex.water_d50_v800_P.stabmax.u\endcsname{\ensuremath{\text{V}}}
\expandafter\def\csname oct2tex.water_d50_v800_P.stabmax.v\endcsname{0.0658652558922768}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d50_v800_P.dtab.d\endcsname{deviation table, c1=sample index, c2=time signature, c3=min, c4=q25, c5=mean, c6=q75, c7=max}
\expandafter\def\csname oct2tex.water_d50_v800_P.dtab.u\endcsname{\ensuremath{\text{V}}}
\begin{filecontents}[overwrite]{oct2tex.water_d50_v800_P.dtab.v}
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	379 ; 2893.0000000000000000 ; 189.2000122070312500 ; -0.0002193248510594 ; -0.0001022180003929 ; 0.0000000000385626 ; 0.0001115722552640 ; 0.0001372969418298
	380 ; 2898.0000000000000000 ; 189.7000122070312500 ; -0.0001603306154720 ; -0.0001000177217065 ; 0.0000000000618456 ; 0.0001012112334138 ; 0.0001965462870430
	381 ; 2903.0000000000000000 ; 190.1999969482421875 ; -0.0002373324095970 ; -0.0001324340701103 ; 0.0000000000145519 ; 0.0001109184377128 ; 0.0002079340920318
	382 ; 2908.0000000000000000 ; 190.6999969482421875 ; -0.0003096787550021 ; -0.0001444594527129 ; 0.0000000000814907 ; 0.0001411616685800 ; 0.0002181336167268
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	385 ; 2923.0000000000000000 ; 192.1999969482421875 ; -0.0002104464801960 ; -0.0001210285699926 ; -0.0000000000443833 ; 0.0001399380853400 ; 0.0002457480295561
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	400 ; 2998.0000000000000000 ; 199.6999969482421875 ; -0.0001760456943884 ; -0.0000796010426711 ; -0.0000000000691216 ; 0.0000847786868690 ; 0.0001512757153250
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	402 ; 3008.0000000000000000 ; 200.7000122070312500 ; -0.0003220595244784 ; -0.0001585602876730 ; -0.0000000001833541 ; 0.0001575224159751 ; 0.0002333332959097
	403 ; 3013.0000000000000000 ; 201.2000122070312500 ; -0.0002114501548931 ; -0.0000817007385194 ; 0.0000000001804437 ; 0.0000783543218859 ; 0.0001663303119130
	404 ; 3018.0000000000000000 ; 201.6999969482421875 ; -0.0001427500974387 ; -0.0000781629059929 ; 0.0000000001891749 ; 0.0000634383468423 ; 0.0001457590260543
	405 ; 3023.0000000000000000 ; 202.1999969482421875 ; -0.0001225829764735 ; -0.0000580189953325 ; 0.0000000001135049 ; 0.0000498433655594 ; 0.0000975746079348
	406 ; 3028.0000000000000000 ; 202.7000122070312500 ; -0.0001150409807451 ; -0.0000498068402521 ; -0.0000000001717126 ; 0.0000470569648314 ; 0.0000680299126543
	407 ; 3033.0000000000000000 ; 203.2000122070312500 ; -0.0000867727212608 ; -0.0000294741475955 ; 0.0000000001004082 ; 0.0000300465326291 ; 0.0000785617739893
	408 ; 3038.0000000000000000 ; 203.6999969482421875 ; -0.0001772379328031 ; -0.0000790353369666 ; 0.0000000000261934 ; 0.0000752234045649 ; 0.0001174079661723
\end{filecontents}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d50_v800_P.dtabxlbl.d\endcsname{deviation table, x axis label and unit}
\expandafter\def\csname oct2tex.water_d50_v800_P.dtabxlbl.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.water_d50_v800_P.dtabxlbl.v\endcsname{Time}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d50_v800_P.dtabylbl.d\endcsname{deviation table, y axis label and unit}
\expandafter\def\csname oct2tex.water_d50_v800_P.dtabylbl.u\endcsname{\ensuremath{\text{V}}}
\expandafter\def\csname oct2tex.water_d50_v800_P.dtabylbl.v\endcsname{Deviation}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d50_v800_P.dtabmin.d\endcsname{deviation table, minimum}
\expandafter\def\csname oct2tex.water_d50_v800_P.dtabmin.u\endcsname{\ensuremath{\text{V}}}
\expandafter\def\csname oct2tex.water_d50_v800_P.dtabmin.v\endcsname{-0.0158031582832336}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d50_v800_P.dtabmax.d\endcsname{deviation table, maximum}
\expandafter\def\csname oct2tex.water_d50_v800_P.dtabmax.u\endcsname{\ensuremath{\text{V}}}
\expandafter\def\csname oct2tex.water_d50_v800_P.dtabmax.v\endcsname{0.0151231139898300}
%
% analysis results, water, D = 70 mm
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d70_v800_P.t0.d\endcsname{time, pulse trigger event}
\expandafter\def\csname oct2tex.water_d70_v800_P.t0.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.water_d70_v800_P.t0.v\endcsname{1.0000000000000000}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d70_v800_P.t0a.d\endcsname{time, pulse trigger event, lower limit}
\expandafter\def\csname oct2tex.water_d70_v800_P.t0a.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.water_d70_v800_P.t0a.v\endcsname{0.5000000000000000}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d70_v800_P.t0b.d\endcsname{time, pulse trigger event, upper limit}
\expandafter\def\csname oct2tex.water_d70_v800_P.t0b.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.water_d70_v800_P.t0b.v\endcsname{1.2000000476837158}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d70_v800_P.t1.d\endcsname{time-of-flight, first appearance of wave}
\expandafter\def\csname oct2tex.water_d70_v800_P.t1.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.water_d70_v800_P.t1.v\endcsname{47.7005882263183594}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d70_v800_P.t1a.d\endcsname{time-of-flight, first appearance of wave, lower limit}
\expandafter\def\csname oct2tex.water_d70_v800_P.t1a.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.water_d70_v800_P.t1a.v\endcsname{46.4947662353515625}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d70_v800_P.t1b.d\endcsname{time-of-flight, first appearance of wave, upper limit}
\expandafter\def\csname oct2tex.water_d70_v800_P.t1b.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.water_d70_v800_P.t1b.v\endcsname{47.9184303283691406}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d70_v800_P.t2.d\endcsname{time-of-flight, first reflection of wave}
\expandafter\def\csname oct2tex.water_d70_v800_P.t2.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.water_d70_v800_P.t2.v\endcsname{141.1017608642578125}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d70_v800_P.t2a.d\endcsname{time-of-flight, first reflection of wave, lower limit}
\expandafter\def\csname oct2tex.water_d70_v800_P.t2a.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.water_d70_v800_P.t2a.v\endcsname{138.4842987060546875}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d70_v800_P.t2b.d\endcsname{time-of-flight, first reflection of wave, upper limit}
\expandafter\def\csname oct2tex.water_d70_v800_P.t2b.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.water_d70_v800_P.t2b.v\endcsname{141.3553009033203125}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d70_v800_P.t3.d\endcsname{time-of-flight, second reflection of wave}
\expandafter\def\csname oct2tex.water_d70_v800_P.t3.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.water_d70_v800_P.t3.v\endcsname{234.5029296875000000}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d70_v800_P.t3a.d\endcsname{time-of-flight, second reflection of wave, lower limit}
\expandafter\def\csname oct2tex.water_d70_v800_P.t3a.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.water_d70_v800_P.t3a.v\endcsname{230.4738311767578125}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d70_v800_P.t3b.d\endcsname{time-of-flight, second reflection of wave, upper limit}
\expandafter\def\csname oct2tex.water_d70_v800_P.t3b.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.water_d70_v800_P.t3b.v\endcsname{234.7921752929687500}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d70_v800_P.umd.d\endcsname{ultrasonic measuring distance}
\expandafter\def\csname oct2tex.water_d70_v800_P.umd.u\endcsname{\ensuremath{\text{mm}}}
\expandafter\def\csname oct2tex.water_d70_v800_P.umd.v\endcsname{69.2000000000000028}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d70_v800_P.umda.d\endcsname{ultrasonic measuring distance, lower limit}
\expandafter\def\csname oct2tex.water_d70_v800_P.umda.u\endcsname{\ensuremath{\text{mm}}}
\expandafter\def\csname oct2tex.water_d70_v800_P.umda.v\endcsname{68.1899999999999977}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d70_v800_P.umdb.d\endcsname{ultrasonic measuring distance, upper limit}
\expandafter\def\csname oct2tex.water_d70_v800_P.umdb.u\endcsname{\ensuremath{\text{mm}}}
\expandafter\def\csname oct2tex.water_d70_v800_P.umdb.v\endcsname{69.1899999999999977}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d70_v800_P.cs.d\endcsname{speed of sound}
\expandafter\def\csname oct2tex.water_d70_v800_P.cs.u\endcsname{\ensuremath{m/Sec}}
\expandafter\def\csname oct2tex.water_d70_v800_P.cs.v\endcsname{1481.7799999999999727}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d70_v800_P.csa.d\endcsname{speed of sound, lower limit}
\expandafter\def\csname oct2tex.water_d70_v800_P.csa.u\endcsname{\ensuremath{m/Sec}}
\expandafter\def\csname oct2tex.water_d70_v800_P.csa.v\endcsname{1482.5599999999999454}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d70_v800_P.csb.d\endcsname{speed of sound, upper limit}
\expandafter\def\csname oct2tex.water_d70_v800_P.csb.u\endcsname{\ensuremath{m/Sec}}
\expandafter\def\csname oct2tex.water_d70_v800_P.csb.v\endcsname{1481.0000000000000000}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d70_v800_P.tm.d\endcsname{environment temperature}
\expandafter\def\csname oct2tex.water_d70_v800_P.tm.u\endcsname{\ensuremath{{}^{\circ} \text{Celsius}}}
\expandafter\def\csname oct2tex.water_d70_v800_P.tm.v\endcsname{20.3000000000000007}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d70_v800_P.tma.d\endcsname{environment temperature, lower limit}
\expandafter\def\csname oct2tex.water_d70_v800_P.tma.u\endcsname{\ensuremath{{}^{\circ} \text{Celsius}}}
\expandafter\def\csname oct2tex.water_d70_v800_P.tma.v\endcsname{20.0000000000000000}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d70_v800_P.tmb.d\endcsname{environment temperature, upper limit}
\expandafter\def\csname oct2tex.water_d70_v800_P.tmb.u\endcsname{\ensuremath{{}^{\circ} \text{Celsius}}}
\expandafter\def\csname oct2tex.water_d70_v800_P.tmb.v\endcsname{20.6000000000000014}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d70_v800_P.hu.d\endcsname{humidity}
\expandafter\def\csname oct2tex.water_d70_v800_P.hu.u\endcsname{\ensuremath{\%}}
\expandafter\def\csname oct2tex.water_d70_v800_P.hu.v\endcsname{70.0000000000000000}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d70_v800_P.hua.d\endcsname{humidity, lower limit}
\expandafter\def\csname oct2tex.water_d70_v800_P.hua.u\endcsname{\ensuremath{\%}}
\expandafter\def\csname oct2tex.water_d70_v800_P.hua.v\endcsname{66.7180000000000035}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d70_v800_P.hub.d\endcsname{humidity, upper limit}
\expandafter\def\csname oct2tex.water_d70_v800_P.hub.u\endcsname{\ensuremath{\%}}
\expandafter\def\csname oct2tex.water_d70_v800_P.hub.v\endcsname{73.2819999999999965}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d70_v800_P.stab.d\endcsname{signal table, c1=sample index, c2=time signature, c3=ensemble average}
\expandafter\def\csname oct2tex.water_d70_v800_P.stab.u\endcsname{\ensuremath{\text{V}}}
\begin{filecontents}[overwrite]{oct2tex.water_d70_v800_P.stab.v}
	idx ; c1 ; c2 ; c3
	1 ; 1003.5000000000000000 ; 0.2500000000000000 ; 0.0000375873278244
	2 ; 1009.5000000000000000 ; 0.8499999642372131 ; 0.0000559001164220
	3 ; 1015.5000000000000000 ; 1.4500000476837158 ; 0.0021032693330199
	4 ; 1021.5000000000000000 ; 2.0499999523162842 ; -0.0037092075217515
	5 ; 1027.5000000000000000 ; 2.6500000953674316 ; -0.0011344307567924
	6 ; 1033.5000000000000000 ; 3.2500000000000000 ; -0.0028375198598951
	7 ; 1039.5000000000000000 ; 3.8499999046325684 ; 0.0016759712016210
	8 ; 1045.5000000000000000 ; 4.4499998092651367 ; 0.0053702704608440
	9 ; 1051.5000000000000000 ; 5.0500001907348633 ; 0.0035780586767942
	10 ; 1057.5000000000000000 ; 5.6500000953674316 ; 0.0063408473506570
	11 ; 1063.5000000000000000 ; 6.2500000000000000 ; -0.0026727041695267
	12 ; 1069.5000000000000000 ; 6.8499999046325684 ; -0.0003115763829555
	13 ; 1075.5000000000000000 ; 7.4499998092651367 ; -0.0003494228294585
	14 ; 1081.5000000000000000 ; 8.0500001907348633 ; -0.0002480920520611
	15 ; 1087.5000000000000000 ; 8.6499996185302734 ; -0.0001858285831986
	16 ; 1093.5000000000000000 ; 9.2500000000000000 ; -0.0001394362188876
	17 ; 1099.5000000000000000 ; 9.8500003814697266 ; -0.0000942647020565
	18 ; 1105.5000000000000000 ; 10.4500007629394531 ; -0.0000771727645770
	19 ; 1111.5000000000000000 ; 11.0499992370605469 ; -0.0001235651579918
	20 ; 1117.5000000000000000 ; 11.6499996185302734 ; -0.0001040315255523
	21 ; 1123.5000000000000000 ; 12.2500000000000000 ; -0.0001479821949033
	22 ; 1129.5000000000000000 ; 12.8500003814697266 ; -0.0001223442959599
	23 ; 1135.5000000000000000 ; 13.4499998092651367 ; -0.0000698476796970
	24 ; 1141.5000000000000000 ; 14.0499992370605469 ; -0.0000466514684376
	25 ; 1147.5000000000000000 ; 14.6499996185302734 ; -0.0000686268176651
	26 ; 1153.5000000000000000 ; 15.2500000000000000 ; -0.0000368846594938
	27 ; 1159.5000000000000000 ; 15.8500003814697266 ; -0.0000564182882954
	28 ; 1165.5000000000000000 ; 16.4500007629394531 ; -0.0000759519316489
	29 ; 1171.5000000000000000 ; 17.0500011444091797 ; -0.0000515348801855
	30 ; 1177.5000000000000000 ; 17.6499996185302734 ; -0.0000381055106118
	31 ; 1183.5000000000000000 ; 18.2500000000000000 ; -0.0000393263617298
	32 ; 1189.5000000000000000 ; 18.8500003814697266 ; 0.0000290413499897
	33 ; 1195.5000000000000000 ; 19.4500007629394531 ; -0.0000600808489253
	34 ; 1201.5000000000000000 ; 20.0499992370605469 ; -0.0000136884609674
	35 ; 1207.5000000000000000 ; 20.6500015258789062 ; -0.0000283386907540
	36 ; 1213.5000000000000000 ; 21.2500000000000000 ; 0.0000412498848164
	37 ; 1219.5000000000000000 ; 21.8499984741210938 ; -0.0000478723304695
	38 ; 1225.5000000000000000 ; 22.4500007629394531 ; -0.0000258969776041
	39 ; 1231.5000000000000000 ; 23.0499992370605469 ; 0.0000534584105480
	40 ; 1237.5000000000000000 ; 23.6499996185302734 ; 0.0000803171569714
	41 ; 1243.5000000000000000 ; 24.2500000000000000 ; -0.0000368846594938
	42 ; 1249.5000000000000000 ; 24.8500003814697266 ; 0.0000278205006907
	43 ; 1255.5000000000000000 ; 25.4500007629394531 ; 0.0000241579491558
	44 ; 1261.5000000000000000 ; 26.0499992370605469 ; 0.0000510167046741
	45 ; 1267.5000000000000000 ; 26.6499996185302734 ; 0.0000314830649586
	46 ; 1273.5000000000000000 ; 27.2500000000000000 ; -0.0000417680639657
	47 ; 1279.5000000000000000 ; 27.8499984741210938 ; -0.0000197927256522
	48 ; 1285.5000000000000000 ; 28.4500007629394531 ; 0.0000180536881089
	49 ; 1291.5000000000000000 ; 29.0499992370605469 ; -0.0000417680639657
	50 ; 1297.5000000000000000 ; 29.6499996185302734 ; 0.0000265996695816
	51 ; 1303.5000000000000000 ; 30.2500000000000000 ; -0.0000478723231936
	52 ; 1309.5000000000000000 ; 30.8500003814697266 ; 0.0000510166937602
	53 ; 1315.5000000000000000 ; 31.4500007629394531 ; 0.0000485749988002
	54 ; 1321.5000000000000000 ; 32.0499992370605469 ; 0.0000265996604867
	55 ; 1327.5000000000000000 ; 32.6499977111816406 ; 0.0000681086385157
	56 ; 1333.5000000000000000 ; 33.2500000000000000 ; 0.0000546792580280
	57 ; 1339.5000000000000000 ; 33.8500022888183594 ; 0.0000546792580280
	58 ; 1345.5000000000000000 ; 34.4499969482421875 ; 0.0000436915943283
	59 ; 1351.5000000000000000 ; 35.0499992370605469 ; 0.0000265996495727
	60 ; 1357.5000000000000000 ; 35.6500015258789062 ; 0.0000241579455178
	61 ; 1363.5000000000000000 ; 36.2500000000000000 ; 0.0000424707322964
	62 ; 1369.5000000000000000 ; 36.8499984741210938 ; 0.0000729920429876
	63 ; 1375.5000000000000000 ; 37.4500007629394531 ; 0.0000217162541958
	64 ; 1381.5000000000000000 ; 38.0499992370605469 ; -0.0000344429608958
	65 ; 1387.5000000000000000 ; 38.6500015258789062 ; -0.0000613016891293
	66 ; 1393.5000000000000000 ; 39.2500000000000000 ; -0.0000613017109572
	67 ; 1399.5000000000000000 ; 39.8499984741210938 ; -0.0000686268031131
	68 ; 1405.5000000000000000 ; 40.4500007629394531 ; -0.0000698476651451
	69 ; 1411.5000000000000000 ; 41.0500030517578125 ; -0.0000258969776041
	70 ; 1417.5000000000000000 ; 41.6499977111816406 ; -0.0000307803929900
	71 ; 1423.5000000000000000 ; 42.2500000000000000 ; -0.0000564182810194
	72 ; 1429.5000000000000000 ; 42.8500022888183594 ; -0.0000429889078077
	73 ; 1435.5000000000000000 ; 43.4500007629394531 ; -0.0000405472055718
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	347 ; 3080.5000000000000000 ; 207.9499969482421875 ; 0.0127527611330152
	348 ; 3086.5000000000000000 ; 208.5500030517578125 ; 0.0136293349787593
	349 ; 3092.5000000000000000 ; 209.1499938964843750 ; 0.0120825143530965
	350 ; 3098.5000000000000000 ; 209.7500000000000000 ; 0.0086934287101030
	351 ; 3104.5000000000000000 ; 210.3500061035156250 ; 0.0062175411731005
	352 ; 3110.5000000000000000 ; 210.9499969482421875 ; 0.0043032448738813
	353 ; 3116.5000000000000000 ; 211.5499877929687500 ; 0.0022644214332104
	354 ; 3122.5000000000000000 ; 212.1499938964843750 ; 0.0073663620278239
	355 ; 3128.5000000000000000 ; 212.7500000000000000 ; 0.0081318365409970
	356 ; 3134.5000000000000000 ; 213.3499908447265625 ; 0.0052335346117616
	357 ; 3140.5000000000000000 ; 213.9499969482421875 ; -0.0028717031236738
	358 ; 3146.5000000000000000 ; 214.5500030517578125 ; -0.0087952781468630
	359 ; 3152.5000000000000000 ; 215.1499938964843750 ; -0.0104837175458670
	360 ; 3158.5000000000000000 ; 215.7500000000000000 ; -0.0101504251360893
	361 ; 3164.5000000000000000 ; 216.3500061035156250 ; -0.0087525490671396
	362 ; 3170.5000000000000000 ; 216.9500122070312500 ; -0.0107486415654421
	363 ; 3176.5000000000000000 ; 217.5500030517578125 ; -0.0116447489708662
	364 ; 3182.5000000000000000 ; 218.1499938964843750 ; -0.0117558427155018
	365 ; 3188.5000000000000000 ; 218.7500000000000000 ; -0.0158994160592556
	366 ; 3194.5000000000000000 ; 219.3500061035156250 ; -0.0171886384487152
	367 ; 3200.5000000000000000 ; 219.9499969482421875 ; -0.0167308151721954
	368 ; 3206.5000000000000000 ; 220.5499877929687500 ; -0.0159641206264496
	369 ; 3212.5000000000000000 ; 221.1499938964843750 ; -0.0159104056656361
	370 ; 3218.5000000000000000 ; 221.7500000000000000 ; -0.0156076326966286
	371 ; 3224.5000000000000000 ; 222.3500061035156250 ; -0.0154428184032440
	372 ; 3230.5000000000000000 ; 222.9499969482421875 ; -0.0121513996273279
	373 ; 3236.5000000000000000 ; 223.5500030517578125 ; -0.0097817266359925
	374 ; 3242.5000000000000000 ; 224.1500091552734375 ; -0.0097170220687985
	375 ; 3248.5000000000000000 ; 224.7500000000000000 ; -0.0068187178112566
	376 ; 3254.5000000000000000 ; 225.3500061035156250 ; 0.0076178596355021
	377 ; 3260.5000000000000000 ; 225.9500122070312500 ; 0.0152506250888109
	378 ; 3266.5000000000000000 ; 226.5499877929687500 ; 0.0168865676969290
	379 ; 3272.5000000000000000 ; 227.1499938964843750 ; 0.0159269794821739
	380 ; 3278.5000000000000000 ; 227.7500000000000000 ; 0.0139369890093803
	381 ; 3284.5000000000000000 ; 228.3500061035156250 ; 0.0156864710152149
	382 ; 3290.5000000000000000 ; 228.9499969482421875 ; 0.0173297338187695
	383 ; 3296.5000000000000000 ; 229.5500030517578125 ; 0.0190743319690228
	384 ; 3302.5000000000000000 ; 230.1499938964843750 ; 0.0191768892109394
	385 ; 3308.5000000000000000 ; 230.7500000000000000 ; 0.0199667792767286
	386 ; 3314.5000000000000000 ; 231.3500061035156250 ; 0.0206016227602959
	387 ; 3320.5000000000000000 ; 231.9499969482421875 ; 0.0203733202069998
	388 ; 3326.5000000000000000 ; 232.5499877929687500 ; 0.0195870921015739
	389 ; 3332.5000000000000000 ; 233.1499938964843750 ; 0.0184101909399033
	390 ; 3338.5000000000000000 ; 233.7500000000000000 ; 0.0101621150970459
	391 ; 3344.5000000000000000 ; 234.3500061035156250 ; -0.0042512654326856
	392 ; 3350.5000000000000000 ; 234.9499969482421875 ; 0.0045938072726130
	393 ; 3356.5000000000000000 ; 235.5500030517578125 ; -0.0248580276966095
	394 ; 3362.5000000000000000 ; 236.1499938964843750 ; -0.0465806499123573
	395 ; 3368.5000000000000000 ; 236.7500000000000000 ; -0.0357736721634865
	396 ; 3374.5000000000000000 ; 237.3500061035156250 ; 0.0386812165379524
	397 ; 3380.5000000000000000 ; 237.9500122070312500 ; 0.0142812700942159
	398 ; 3386.5000000000000000 ; 238.5500030517578125 ; -0.0223882421851158
	399 ; 3392.5000000000000000 ; 239.1499938964843750 ; -0.0521623864769936
	400 ; 3398.5000000000000000 ; 239.7500000000000000 ; -0.0596791729331017
	401 ; 3404.5000000000000000 ; 240.3500061035156250 ; 0.0421960502862930
	402 ; 3410.5000000000000000 ; 240.9499969482421875 ; 0.0603317990899086
	403 ; 3416.5000000000000000 ; 241.5499877929687500 ; 0.0574127621948719
	404 ; 3422.5000000000000000 ; 242.1499938964843750 ; 0.0439479760825634
	405 ; 3428.5000000000000000 ; 242.7500000000000000 ; 0.0175946615636349
	406 ; 3434.5000000000000000 ; 243.3500061035156250 ; -0.0409818217158318
	407 ; 3440.5000000000000000 ; 243.9499969482421875 ; -0.0626519471406937
	408 ; 3446.5000000000000000 ; 244.5500030517578125 ; -0.0605874843895435
	409 ; 3452.5000000000000000 ; 245.1500091552734375 ; -0.0246626920998096
	410 ; 3458.5000000000000000 ; 245.7500000000000000 ; -0.0020903574768454
	411 ; 3464.5000000000000000 ; 246.3500061035156250 ; -0.0016923599177971
	412 ; 3470.5000000000000000 ; 246.9499816894531250 ; -0.0154794408008456
	413 ; 3476.5000000000000000 ; 247.5499877929687500 ; -0.0160446949303150
	414 ; 3482.5000000000000000 ; 248.1499938964843750 ; 0.0247683878988028
	415 ; 3488.5000000000000000 ; 248.7500000000000000 ; 0.0378876738250256
	416 ; 3494.5000000000000000 ; 249.3500061035156250 ; 0.0393783226609230
	417 ; 3500.5000000000000000 ; 249.9500122070312500 ; 0.0348562821745872
	418 ; 3506.5000000000000000 ; 250.5500030517578125 ; 0.0157597195357084
	419 ; 3512.5000000000000000 ; 251.1499938964843750 ; -0.0052999779582024
	420 ; 3518.5000000000000000 ; 251.7500000000000000 ; -0.0130975618958473
	421 ; 3524.5000000000000000 ; 252.3500061035156250 ; -0.0201418772339821
	422 ; 3530.5000000000000000 ; 252.9500122070312500 ; -0.0318742617964745
	423 ; 3536.5000000000000000 ; 253.5500183105468750 ; -0.0440412834286690
	424 ; 3542.5000000000000000 ; 254.1499938964843750 ; -0.0494667515158653
	425 ; 3548.5000000000000000 ; 254.7499847412109375 ; -0.0498366691172123
	426 ; 3554.5000000000000000 ; 255.3499908447265625 ; -0.0463010780513287
	427 ; 3560.5000000000000000 ; 255.9500122070312500 ; -0.0306546352803707
	428 ; 3566.5000000000000000 ; 256.5499877929687500 ; -0.0104434285312891
	429 ; 3572.5000000000000000 ; 257.1500244140625000 ; 0.0137819424271584
	430 ; 3578.5000000000000000 ; 257.7500000000000000 ; 0.0175360571593046
	431 ; 3584.5000000000000000 ; 258.3499755859375000 ; 0.0251407474279404
	432 ; 3590.5000000000000000 ; 258.9499816894531250 ; 0.0379853323101997
	433 ; 3596.5000000000000000 ; 259.5499877929687500 ; 0.0453507378697395
	434 ; 3602.5000000000000000 ; 260.1499938964843750 ; 0.0477875582873821
	435 ; 3608.5000000000000000 ; 260.7500000000000000 ; 0.0468853488564491
	436 ; 3614.5000000000000000 ; 261.3500061035156250 ; 0.0337709523737431
	437 ; 3620.5000000000000000 ; 261.9500122070312500 ; 0.0188472568988800
	438 ; 3626.5000000000000000 ; 262.5499877929687500 ; 0.0102951852604747
	439 ; 3632.5000000000000000 ; 263.1499938964843750 ; 0.0015160391340032
	440 ; 3638.5000000000000000 ; 263.7500000000000000 ; 0.0047830394469202
	441 ; 3644.5000000000000000 ; 264.3500061035156250 ; 0.0053690480999649
	442 ; 3650.5000000000000000 ; 264.9500122070312500 ; 0.0036622970364988
	443 ; 3656.5000000000000000 ; 265.5499877929687500 ; -0.0096010407432914
	444 ; 3662.5000000000000000 ; 266.1499938964843750 ; -0.0153671232983470
	445 ; 3668.5000000000000000 ; 266.7500000000000000 ; -0.0210257787257433
	446 ; 3674.5000000000000000 ; 267.3500061035156250 ; -0.0213602893054485
	447 ; 3680.5000000000000000 ; 267.9500122070312500 ; -0.0185376759618521
	448 ; 3686.5000000000000000 ; 268.5500183105468750 ; -0.0152438189834356
	449 ; 3692.5000000000000000 ; 269.1500244140625000 ; -0.0112504102289677
	450 ; 3698.5000000000000000 ; 269.7500000000000000 ; 0.0070806839503348
	451 ; 3704.5000000000000000 ; 270.3499755859375000 ; 0.0082856640219688
	452 ; 3710.5000000000000000 ; 270.9500122070312500 ; 0.0092098480090499
	453 ; 3716.5000000000000000 ; 271.5499877929687500 ; 0.0109849693253636
	454 ; 3722.5000000000000000 ; 272.1499938964843750 ; 0.0105320308357477
	455 ; 3728.5000000000000000 ; 272.7500000000000000 ; 0.0093758851289749
	456 ; 3734.5000000000000000 ; 273.3499755859375000 ; 0.0137355457991362
	457 ; 3740.5000000000000000 ; 273.9499816894531250 ; 0.0139907049015164
	458 ; 3746.5000000000000000 ; 274.5499877929687500 ; 0.0119213620200753
	459 ; 3752.5000000000000000 ; 275.1499938964843750 ; 0.0086580244824290
	460 ; 3758.5000000000000000 ; 275.7500000000000000 ; 0.0047610653564334
	461 ; 3764.5000000000000000 ; 276.3500061035156250 ; -0.0041719097644091
	462 ; 3770.5000000000000000 ; 276.9500122070312500 ; -0.0040302919223905
	463 ; 3776.5000000000000000 ; 277.5499877929687500 ; -0.0018718254286796
	464 ; 3782.5000000000000000 ; 278.1499938964843750 ; -0.0016044585499913
	465 ; 3788.5000000000000000 ; 278.7500000000000000 ; -0.0053878799080849
	466 ; 3794.5000000000000000 ; 279.3500061035156250 ; -0.0100271180272102
	467 ; 3800.5000000000000000 ; 279.9500122070312500 ; -0.0135431736707687
	468 ; 3807.0000000000000000 ; 280.6000366210937500 ; -0.0160215012729168
\end{filecontents}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d70_v800_P.stabxlbl.d\endcsname{signal table, x axis label and unit}
\expandafter\def\csname oct2tex.water_d70_v800_P.stabxlbl.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.water_d70_v800_P.stabxlbl.v\endcsname{Time}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d70_v800_P.stabylbl.d\endcsname{signal table, y axis label and unit}
\expandafter\def\csname oct2tex.water_d70_v800_P.stabylbl.u\endcsname{\ensuremath{\text{V}}}
\expandafter\def\csname oct2tex.water_d70_v800_P.stabylbl.v\endcsname{Amplitude}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d70_v800_P.stabmin.d\endcsname{signal table, minimum}
\expandafter\def\csname oct2tex.water_d70_v800_P.stabmin.u\endcsname{\ensuremath{\text{V}}}
\expandafter\def\csname oct2tex.water_d70_v800_P.stabmin.v\endcsname{-1.4000440835952759}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d70_v800_P.stabmax.d\endcsname{signal table, maximum}
\expandafter\def\csname oct2tex.water_d70_v800_P.stabmax.u\endcsname{\ensuremath{\text{V}}}
\expandafter\def\csname oct2tex.water_d70_v800_P.stabmax.v\endcsname{1.2575397491455078}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d70_v800_P.dtab.d\endcsname{deviation table, c1=sample index, c2=time signature, c3=min, c4=q25, c5=mean, c6=q75, c7=max}
\expandafter\def\csname oct2tex.water_d70_v800_P.dtab.u\endcsname{\ensuremath{\text{V}}}
\begin{filecontents}[overwrite]{oct2tex.water_d70_v800_P.dtab.v}
	idx ; c1 ; c2 ; c3 ; c4 ; c5 ; c6 ; c7
	1 ; 1003.5000000000000000 ; 0.2500000000000000 ; -0.0004760902374983 ; -0.0001221516577061 ; -0.0000000000093223 ; 0.0001328436337644 ; 0.0004848560201935
	2 ; 1009.5000000000000000 ; 0.8499999642372131 ; -0.0005420162342489 ; -0.0001305619662162 ; 0.0000000000030923 ; 0.0001291810622206 ; 0.0004162983677816
	3 ; 1015.5000000000000000 ; 1.4500000476837158 ; -0.0258959941565990 ; -0.0085194706916809 ; -0.0000000002240995 ; 0.0060040033422410 ; 0.0327954702079296
	4 ; 1021.5000000000000000 ; 2.0499999523162842 ; -0.0357013903558254 ; -0.0108654070645571 ; -0.0000000004307367 ; 0.0079256501048803 ; 0.0484289936721325
	5 ; 1027.5000000000000000 ; 2.6500000953674316 ; -0.0298335421830416 ; -0.0064366157166660 ; 0.0000000000931323 ; 0.0068589788861573 ; 0.0192848127335310
	6 ; 1033.5000000000000000 ; 3.2500000000000000 ; -0.0338356867432594 ; -0.0089278593659401 ; 0.0000000006286427 ; 0.0100368307903409 ; 0.0323628783226013
	7 ; 1039.5000000000000000 ; 3.8499999046325684 ; -0.0121488748118281 ; -0.0043284487910569 ; -0.0000000000771252 ; 0.0034197026398033 ; 0.0208653006702662
	8 ; 1045.5000000000000000 ; 4.4499998092651367 ; -0.0261513423174620 ; -0.0134683987125754 ; -0.0000000008381903 ; 0.0083365906029940 ; 0.0308151915669441
	9 ; 1051.5000000000000000 ; 5.0500001907348633 ; -0.0347015410661697 ; -0.0132955536246300 ; -0.0000000001760782 ; 0.0116375032812357 ; 0.0363658890128136
	10 ; 1057.5000000000000000 ; 5.6500000953674316 ; -0.0321293137967587 ; -0.0091260727494955 ; -0.0000000009546056 ; 0.0078452909365296 ; 0.0280647762119770
	11 ; 1063.5000000000000000 ; 6.2500000000000000 ; -0.0162083432078362 ; -0.0024368604645133 ; -0.0000000002793968 ; 0.0034592314623296 ; 0.0114817759022117
	12 ; 1069.5000000000000000 ; 6.8499999046325684 ; -0.0033381746616215 ; -0.0002691694244277 ; 0.0000000000269210 ; 0.0002967633190565 ; 0.0030186939984560
	13 ; 1075.5000000000000000 ; 7.4499998092651367 ; -0.0023416064213961 ; -0.0001874266308732 ; 0.0000000000400178 ; 0.0001860185875557 ; 0.0004577802610584
	14 ; 1081.5000000000000000 ; 8.0500001907348633 ; -0.0020571481436491 ; -0.0001501227525296 ; 0.0000000000480213 ; 0.0001716395636322 ; 0.0027666827663779
	15 ; 1087.5000000000000000 ; 8.6499996185302734 ; -0.0005977686378174 ; -0.0001470299175708 ; -0.0000000000363798 ; 0.0001789646921679 ; 0.0008090871851891
	16 ; 1093.5000000000000000 ; 9.2500000000000000 ; -0.0005525970482267 ; -0.0001441541535314 ; -0.0000000000165528 ; 0.0001261425495613 ; 0.0003576974268071
	17 ; 1099.5000000000000000 ; 9.8500003814697266 ; -0.0004590798052959 ; -0.0001398947206326 ; -0.0000000000165528 ; 0.0001641788112465 ; 0.0004305687616579
	18 ; 1105.5000000000000000 ; 10.4500007629394531 ; -0.0006173021974973 ; -0.0001221788115799 ; 0.0000000000080036 ; 0.0001588071172591 ; 0.0004757945425808
	19 ; 1111.5000000000000000 ; 11.0499992370605469 ; -0.0005257654702291 ; -0.0001402745692758 ; 0.0000000000109139 ; 0.0001441026106477 ; 0.0004696902760770
	20 ; 1117.5000000000000000 ; 11.6499996185302734 ; -0.0003616285976022 ; -0.0001259227283299 ; 0.0000000000165528 ; 0.0001359635789413 ; 0.0003657280176412
	21 ; 1123.5000000000000000 ; 12.2500000000000000 ; -0.0020535667426884 ; -0.0001377243315801 ; -0.0000000000069122 ; 0.0001735658297548 ; 0.0006819287082180
	22 ; 1129.5000000000000000 ; 12.8500003814697266 ; -0.0025706926826388 ; -0.0001177566373372 ; -0.0000000000170985 ; 0.0001607332815183 ; 0.0006355362711474
	23 ; 1135.5000000000000000 ; 13.4499998092651367 ; -0.0004636375815608 ; -0.0001379142340738 ; 0.0000000000085492 ; 0.0001314057008130 ; 0.0004397387383506
	24 ; 1141.5000000000000000 ; 14.0499992370605469 ; -0.0004525684926193 ; -0.0001845507940743 ; 0.0000000000058208 ; 0.0001410369004589 ; 0.0004414207942318
	25 ; 1147.5000000000000000 ; 14.6499996185302734 ; -0.0006877317791805 ; -0.0001381855399814 ; 0.0000000000069122 ; 0.0001478736667195 ; 0.0003680069348775
	26 ; 1153.5000000000000000 ; 15.2500000000000000 ; -0.0004489059501793 ; -0.0001540566299809 ; -0.0000000000050932 ; 0.0001748680660967 ; 0.0004087561974302
	27 ; 1159.5000000000000000 ; 15.8500003814697266 ; -0.0004973059403710 ; -0.0001394606661052 ; -0.0000000000080036 ; 0.0001282857847400 ; 0.0003769869217649
	28 ; 1165.5000000000000000 ; 16.4500007629394531 ; -0.0006193912122399 ; -0.0001373715931550 ; -0.0000000000072760 ; 0.0001349597732769 ; 0.0005066142766736
	29 ; 1171.5000000000000000 ; 17.0500011444091797 ; -0.0005485817673616 ; -0.0001607306039659 ; 0.0000000000043656 ; 0.0001403586647939 ; 0.0004263094160706
	30 ; 1177.5000000000000000 ; 17.6499996185302734 ; -0.0003611945430748 ; -0.0001527815329609 ; 0.0000000000043656 ; 0.0001432886929251 ; 0.0006027630879544
	31 ; 1183.5000000000000000 ; 18.2500000000000000 ; -0.0004600835090969 ; -0.0001267095212825 ; -0.0000000000120053 ; 0.0001327622449026 ; 0.0004349095688667
	32 ; 1189.5000000000000000 ; 18.8500003814697266 ; -0.0004382981278468 ; -0.0001287985505769 ; 0.0000000000080036 ; 0.0001255999086425 ; 0.0004074810422026
	33 ; 1195.5000000000000000 ; 19.4500007629394531 ; -0.0004155088681728 ; -0.0001425263471901 ; 0.0000000000043656 ; 0.0001351225073449 ; 0.0004568849108182
	34 ; 1201.5000000000000000 ; 20.0499992370605469 ; -0.0003928824444301 ; -0.0001456462778151 ; 0.0000000000021828 ; 0.0001340102171525 ; 0.0004220228292979
	35 ; 1207.5000000000000000 ; 20.6500015258789062 ; -0.0004349339869805 ; -0.0001131445023930 ; 0.0000000000086402 ; 0.0001336032582913 ; 0.0004853986029048
	36 ; 1213.5000000000000000 ; 21.2500000000000000 ; -0.0003788018948399 ; -0.0001290155487368 ; -0.0000000000040018 ; 0.0001368046214338 ; 0.0004361304163467
	37 ; 1219.5000000000000000 ; 21.8499984741210938 ; -0.0004615214711521 ; -0.0001514249888714 ; 0.0000000000087311 ; 0.0001411996490788 ; 0.0005005100392736
	38 ; 1225.5000000000000000 ; 22.4500007629394531 ; -0.0005069914041087 ; -0.0001226942695212 ; -0.0000000000109139 ; 0.0001223985600518 ; 0.0003616584581323
	39 ; 1231.5000000000000000 ; 23.0499992370605469 ; -0.0007707767654210 ; -0.0001136870996561 ; -0.0000000000116415 ; 0.0001426104281563 ; 0.0003753319906536
	40 ; 1237.5000000000000000 ; 23.6499996185302734 ; -0.0004810550890397 ; -0.0001406543160556 ; -0.0000000000058208 ; 0.0001307817874476 ; 0.0004165968857706
	41 ; 1243.5000000000000000 ; 24.2500000000000000 ; -0.0005726190283895 ; -0.0001205238804687 ; 0.0000000000054570 ; 0.0000948615561356 ; 0.0005524369189516
	42 ; 1249.5000000000000000 ; 24.8500003814697266 ; -0.0004655095981434 ; -0.0001450222916901 ; 0.0000000000047294 ; 0.0001393548445776 ; 0.0006220255163498
	43 ; 1255.5000000000000000 ; 25.4500007629394531 ; -0.0004634748038370 ; -0.0001628467580304 ; 0.0000000000038199 ; 0.0001753564283717 ; 0.0005203149630688
	44 ; 1261.5000000000000000 ; 26.0499992370605469 ; -0.0004168382147327 ; -0.0001385653740726 ; -0.0000000000092768 ; 0.0001344985648757 ; 0.0003393846855033
	45 ; 1267.5000000000000000 ; 26.6499996185302734 ; -0.0004496384062804 ; -0.0001467857655371 ; 0.0000000000018190 ; 0.0001390835386701 ; 0.0003323579439893
	46 ; 1273.5000000000000000 ; 27.2500000000000000 ; -0.0004861283814535 ; -0.0001295853144256 ; 0.0000000000043656 ; 0.0001487689587520 ; 0.0004761201853398
	47 ; 1279.5000000000000000 ; 27.8499984741210938 ; -0.0003957852895837 ; -0.0001544636033941 ; 0.0000000000086402 ; 0.0001322738971794 ; 0.0003848546184599
	48 ; 1285.5000000000000000 ; 28.4500007629394531 ; -0.0004604904970620 ; -0.0001216633318109 ; 0.0000000000050932 ; 0.0001404943177477 ; 0.0004044696688652
	49 ; 1291.5000000000000000 ; 29.0499992370605469 ; -0.0004826557124034 ; -0.0001692765799817 ; 0.0000000000094587 ; 0.0001820575707825 ; 0.0004503195232246
	50 ; 1297.5000000000000000 ; 29.6499996185302734 ; -0.0005053906934336 ; -0.0001526458654553 ; -0.0000000000050932 ; 0.0001331962848781 ; 0.0004239218833391
	51 ; 1303.5000000000000000 ; 30.2500000000000000 ; -0.0004133384791203 ; -0.0001338175934507 ; 0.0000000000052751 ; 0.0001145308269770 ; 0.0004000746121164
	52 ; 1309.5000000000000000 ; 30.8500003814697266 ; -0.0003934521810152 ; -0.0001442084030714 ; 0.0000000000116415 ; 0.0001359907037113 ; 0.0004831739352085
	53 ; 1315.5000000000000000 ; 31.4500007629394531 ; -0.0004667032626458 ; -0.0001388094970025 ; -0.0000000000014552 ; 0.0001431802083971 ; 0.0003769869217649
	54 ; 1321.5000000000000000 ; 32.0499992370605469 ; -0.0003971147525590 ; -0.0001427162642358 ; 0.0000000000025466 ; 0.0001369944802718 ; 0.0004100585065316
	55 ; 1327.5000000000000000 ; 32.6499977111816406 ; -0.0003590240958147 ; -0.0001279032439925 ; -0.0000000000061846 ; 0.0001473582233302 ; 0.0004026248643640
	56 ; 1333.5000000000000000 ; 33.2500000000000000 ; -0.0004626609443221 ; -0.0001270079810638 ; 0.0000000000061846 ; 0.0001540593511891 ; 0.0004549858276732
	57 ; 1339.5000000000000000 ; 33.8500022888183594 ; -0.0004126873682253 ; -0.0001442355714971 ; -0.0000000000076398 ; 0.0001312158419751 ; 0.0004665974702220
	58 ; 1345.5000000000000000 ; 34.4499969482421875 ; -0.0005335517926142 ; -0.0001398133317707 ; -0.0000000000083674 ; 0.0001405214134138 ; 0.0003396288957447
	59 ; 1351.5000000000000000 ; 35.0499992370605469 ; -0.0004509135615081 ; -0.0001243220904144 ; 0.0000000000043656 ; 0.0001196313023684 ; 0.0003666232514661
	60 ; 1357.5000000000000000 ; 35.6500015258789062 ; -0.0004581845132634 ; -0.0001298565912293 ; 0.0000000000036380 ; 0.0001278517011087 ; 0.0004030588897876
	61 ; 1363.5000000000000000 ; 36.2500000000000000 ; -0.0003825187741313 ; -0.0001277676055906 ; -0.0000000000101863 ; 0.0001397618034389 ; 0.0003979855391663
	62 ; 1369.5000000000000000 ; 36.8499984741210938 ; -0.0004289111820981 ; -0.0001325967459707 ; -0.0000000000061846 ; 0.0001245960884262 ; 0.0005475535290316
	63 ; 1375.5000000000000000 ; 37.4500007629394531 ; -0.0003935064596590 ; -0.0001375073043164 ; 0.0000000000087311 ; 0.0001407656382071 ; 0.0004746279446408
	64 ; 1381.5000000000000000 ; 38.0499992370605469 ; -0.0004267678596079 ; -0.0001358523732051 ; 0.0000000000069122 ; 0.0001158059822046 ; 0.0005029788590036
	65 ; 1387.5000000000000000 ; 38.6500015258789062 ; -0.0004569364537019 ; -0.0001569052546984 ; 0.0000000000108230 ; 0.0001492844603490 ; 0.0003979855391663
	66 ; 1393.5000000000000000 ; 39.2500000000000000 ; -0.0003958939341828 ; -0.0001572579931235 ; 0.0000000000114596 ; 0.0001694149541436 ; 0.0004736784030683
	67 ; 1399.5000000000000000 ; 39.8499984741210938 ; -0.0004731602384709 ; -0.0001288528146688 ; -0.0000000000061846 ; 0.0001328164653387 ; 0.0003880560107064
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	69 ; 1411.5000000000000000 ; 41.0500030517578125 ; -0.0004398445307743 ; -0.0001086680204025 ; -0.0000000000043656 ; 0.0001254913804587 ; 0.0003999390173703
	70 ; 1417.5000000000000000 ; 41.6499977111816406 ; -0.0004694976960309 ; -0.0001187333109556 ; -0.0000000000060027 ; 0.0001420407061232 ; 0.0004245458694641
	71 ; 1423.5000000000000000 ; 42.2500000000000000 ; -0.0004276360268705 ; -0.0001408985699527 ; -0.0000000000036380 ; 0.0001321111340076 ; 0.0004814647836611
	72 ; 1429.5000000000000000 ; 42.8500022888183594 ; -0.0004776909481734 ; -0.0001251631183550 ; -0.0000000000036380 ; 0.0001697404804872 ; 0.0003979856555816
	73 ; 1435.5000000000000000 ; 43.4500007629394531 ; -0.0004754120309372 ; -0.0001587229926372 ; -0.0000000000043656 ; 0.0001465171662858 ; 0.0004514860338531
	74 ; 1441.5000000000000000 ; 44.0499992370605469 ; -0.0011366526596248 ; -0.0001436658058083 ; 0.0000000000094587 ; 0.0001486333203502 ; 0.0004114149196539
	75 ; 1447.5000000000000000 ; 44.6500015258789062 ; -0.0003798328980338 ; -0.0001518590725027 ; 0.0000000000090949 ; 0.0001406570809195 ; 0.0005483945715241
	76 ; 1453.5000000000000000 ; 45.2500000000000000 ; -0.0004037343896925 ; -0.0001394877908751 ; 0.0000000000050932 ; 0.0001322468160652 ; 0.0004440252960194
	77 ; 1459.5000000000000000 ; 45.8500022888183594 ; -0.0004180048126727 ; -0.0001312402600888 ; -0.0000000000069122 ; 0.0001487960689701 ; 0.0004880573251285
	78 ; 1465.5000000000000000 ; 46.4500007629394531 ; -0.0005619297735393 ; -0.0001182449195767 ; 0.0000000000058208 ; 0.0001171082185465 ; 0.0004177634255029
	79 ; 1471.5000000000000000 ; 47.0499992370605469 ; -0.0004314341931604 ; -0.0001382940390613 ; 0.0000000000118234 ; 0.0001406842202414 ; 0.0004651052877307
	80 ; 1477.5000000000000000 ; 47.6500015258789062 ; -0.0021873181685805 ; -0.0008187970379367 ; -0.0000000000378350 ; 0.0006832579383627 ; 0.0019088848493993
	81 ; 1483.5000000000000000 ; 48.2500000000000000 ; -0.0468321144580841 ; -0.0145764648914337 ; 0.0000001087784796 ; 0.0164138674736023 ; 0.0407609343528748
	82 ; 1489.5000000000000000 ; 48.8499984741210938 ; -0.0573786497116089 ; -0.0187250375747681 ; 0.0000002056360273 ; 0.0223000347614288 ; 0.0551449060440063
	83 ; 1495.5000000000000000 ; 49.4500007629394531 ; -0.0955253392457962 ; -0.0437433570623398 ; -0.0000001117587090 ; 0.0409862548112869 ; 0.1287849247455597
	84 ; 1501.5000000000000000 ; 50.0499992370605469 ; -0.0800029039382935 ; -0.0426712036132812 ; 0.0000001221895189 ; 0.0358388423919678 ; 0.0966629981994629
	85 ; 1507.5000000000000000 ; 50.6500015258789062 ; -0.0821813344955444 ; -0.0293784141540527 ; 0.0000001549720707 ; 0.0297760963439941 ; 0.0949603319168091
	86 ; 1513.5000000000000000 ; 51.2500000000000000 ; -0.0853464603424072 ; -0.0224749147891998 ; 0.0000000849366160 ; 0.0258999168872833 ; 0.0594447851181030
	87 ; 1519.5000000000000000 ; 51.8499984741210938 ; -0.1573532372713089 ; -0.0531952604651451 ; 0.0000001125037699 ; 0.0395511128008366 ; 0.1372815072536469
	88 ; 1525.5000000000000000 ; 52.4500007629394531 ; -0.1329017281532288 ; -0.0327216088771820 ; -0.0000001534819631 ; 0.0382566452026367 ; 0.0937030315399170
	89 ; 1531.5000000000000000 ; 53.0499992370605469 ; -0.1553237438201904 ; -0.0401265621185303 ; 0.0000000767409816 ; 0.0429193079471588 ; 0.1134040951728821
	90 ; 1537.5000000000000000 ; 53.6499977111816406 ; -0.0577570348978043 ; -0.0173241272568703 ; 0.0000000342726700 ; 0.0206858217716217 ; 0.0607104897499084
	91 ; 1543.5000000000000000 ; 54.2500000000000000 ; -0.0489949584007263 ; -0.0128729641437531 ; -0.0000000160187490 ; 0.0148946121335030 ; 0.0530152171850204
	92 ; 1549.5000000000000000 ; 54.8500022888183594 ; -0.0239303112030029 ; -0.0053148693405092 ; -0.0000000093132257 ; 0.0059676226228476 ; 0.0228384733200073
	93 ; 1555.5000000000000000 ; 55.4499969482421875 ; -0.0157743990421295 ; -0.0059495009481907 ; -0.0000000068917871 ; 0.0049084136262536 ; 0.0197167247533798
	94 ; 1561.5000000000000000 ; 56.0499992370605469 ; -0.0094478800892830 ; -0.0040173530578613 ; 0.0000000070780515 ; 0.0029592271894217 ; 0.0136901102960110
	95 ; 1567.5000000000000000 ; 56.6500015258789062 ; -0.0059892144054174 ; -0.0031915910076350 ; -0.0000000125728548 ; 0.0026645110920072 ; 0.0105024594813585
	96 ; 1573.5000000000000000 ; 57.2500000000000000 ; -0.0084187127649784 ; -0.0045599471777678 ; -0.0000000045634807 ; 0.0041631776839495 ; 0.0130845643579960
	97 ; 1579.5000000000000000 ; 57.8499984741210938 ; -0.0089750923216343 ; -0.0054888483136892 ; 0.0000000055879354 ; 0.0057465955615044 ; 0.0124893113970757
	98 ; 1585.5000000000000000 ; 58.4500007629394531 ; -0.0087211541831493 ; -0.0048674382269382 ; -0.0000000066123902 ; 0.0042463019490242 ; 0.0112989768385887
	99 ; 1591.5000000000000000 ; 59.0499992370605469 ; -0.0064796693623066 ; -0.0022575538605452 ; -0.0000000072643163 ; 0.0022890884429216 ; 0.0072897002100945
	100 ; 1597.5000000000000000 ; 59.6500015258789062 ; -0.0053611733019352 ; -0.0018768887966871 ; -0.0000000072643163 ; 0.0017765518277884 ; 0.0038949474692345
	101 ; 1603.5000000000000000 ; 60.2500000000000000 ; -0.0049623455852270 ; -0.0014742035418749 ; 0.0000000059604646 ; 0.0013358993455768 ; 0.0064467927441001
	102 ; 1609.5000000000000000 ; 60.8499984741210938 ; -0.0030993218533695 ; -0.0007756603881717 ; -0.0000000005005859 ; 0.0008752029389143 ; 0.0072171501815319
	103 ; 1615.5000000000000000 ; 61.4499969482421875 ; -0.0022671348415315 ; -0.0007541463710368 ; 0.0000000006170012 ; 0.0005236517754383 ; 0.0055421404540539
	104 ; 1621.5000000000000000 ; 62.0500030517578125 ; -0.0029232469387352 ; -0.0007094630273059 ; 0.0000000007916242 ; 0.0008230328094214 ; 0.0021438039839268
	105 ; 1627.5000000000000000 ; 62.6500015258789062 ; -0.0050804913043976 ; -0.0010586222633719 ; 0.0000000036321581 ; 0.0011634342372417 ; 0.0024725142866373
	106 ; 1633.5000000000000000 ; 63.2500000000000000 ; -0.0053600668907166 ; -0.0007996428757906 ; -0.0000000042375179 ; 0.0010535586625338 ; 0.0024761743843555
	107 ; 1639.5000000000000000 ; 63.8499984741210938 ; -0.0041526518762112 ; -0.0006458405405283 ; 0.0000000052154063 ; 0.0007062591612339 ; 0.0036576613783836
	108 ; 1645.5000000000000000 ; 64.4499969482421875 ; -0.0024822726845741 ; -0.0007216725498438 ; -0.0000000047497450 ; 0.0007444377988577 ; 0.0034122690558434
	109 ; 1651.5000000000000000 ; 65.0500030517578125 ; -0.0058237500488758 ; -0.0008989945054054 ; -0.0000000067520887 ; 0.0010021720081568 ; 0.0038342773914337
	110 ; 1657.5000000000000000 ; 65.6500015258789062 ; -0.0076928697526455 ; -0.0027364538982511 ; -0.0000000052619726 ; 0.0029558902606368 ; 0.0055457251146436
	111 ; 1663.5000000000000000 ; 66.2500000000000000 ; -0.0080701168626547 ; -0.0030485102906823 ; -0.0000000030035152 ; 0.0033087111078203 ; 0.0060049500316381
	112 ; 1669.5000000000000000 ; 66.8499984741210938 ; -0.0064756833016872 ; -0.0025259829126298 ; 0.0000000006635673 ; 0.0028651915490627 ; 0.0048583820462227
	113 ; 1675.5000000000000000 ; 67.4499969482421875 ; -0.0045980121940374 ; -0.0007215628866106 ; 0.0000000020489097 ; 0.0012008179910481 ; 0.0019991467706859
	114 ; 1681.5000000000000000 ; 68.0500030517578125 ; -0.0038169091567397 ; -0.0006711017340422 ; 0.0000000022817404 ; 0.0008831545710564 ; 0.0016325116157532
	115 ; 1687.5000000000000000 ; 68.6499938964843750 ; -0.0032052639871836 ; -0.0007268264889717 ; -0.0000000012107193 ; 0.0009596589952707 ; 0.0014330521225929
	116 ; 1693.5000000000000000 ; 69.2500000000000000 ; -0.0029635317623615 ; -0.0009001838043332 ; -0.0000000033527612 ; 0.0010550245642662 ; 0.0015307776629925
	117 ; 1699.5000000000000000 ; 69.8500061035156250 ; -0.0015265960246325 ; -0.0005167881026864 ; -0.0000000030733645 ; 0.0006362106651068 ; 0.0014153346419334
	118 ; 1705.5000000000000000 ; 70.4499969482421875 ; -0.0015477575361729 ; -0.0005890084430575 ; -0.0000000071246178 ; 0.0006534121930599 ; 0.0018808320164680
	119 ; 1711.5000000000000000 ; 71.0500030517578125 ; -0.0019122734665871 ; -0.0008219978772104 ; 0.0000000026542692 ; 0.0007743323221803 ; 0.0028013270348310
	120 ; 1717.5000000000000000 ; 71.6500015258789062 ; -0.0015911902301013 ; -0.0005208025686443 ; -0.0000000020954758 ; 0.0004672193899751 ; 0.0044470368884504
	121 ; 1723.5000000000000000 ; 72.2500000000000000 ; -0.0017467527650297 ; -0.0009400136768818 ; 0.0000000008323696 ; 0.0003666508710012 ; 0.0057411403395236
	122 ; 1729.5000000000000000 ; 72.8499984741210938 ; -0.0020911423489451 ; -0.0009082452161238 ; -0.0000000012107193 ; 0.0005400109803304 ; 0.0055482448078692
	123 ; 1735.5000000000000000 ; 73.4499969482421875 ; -0.0026612803339958 ; -0.0010685268789530 ; -0.0000000040978194 ; 0.0008436199277639 ; 0.0039650388062000
	124 ; 1741.5000000000000000 ; 74.0500030517578125 ; -0.0030298903584480 ; -0.0015927068889141 ; -0.0000000178813941 ; 0.0015952624380589 ; 0.0050528272986412
	125 ; 1747.5000000000000000 ; 74.6500015258789062 ; -0.0031392201781273 ; -0.0017856135964394 ; 0.0000000104308127 ; 0.0017886273562908 ; 0.0044912248849869
	126 ; 1753.5000000000000000 ; 75.2500000000000000 ; -0.0039388760924339 ; -0.0022954717278481 ; 0.0000000129453834 ; 0.0018806606531143 ; 0.0052594020962715
	127 ; 1759.5000000000000000 ; 75.8499984741210938 ; -0.0039380211383104 ; -0.0021934751421213 ; 0.0000000067055224 ; 0.0017394311726093 ; 0.0059906877577305
	128 ; 1765.5000000000000000 ; 76.4499969482421875 ; -0.0031896373257041 ; -0.0014189949724823 ; -0.0000000054016711 ; 0.0009027626365423 ; 0.0051043434068561
	129 ; 1771.5000000000000000 ; 77.0500030517578125 ; -0.0017131343483925 ; -0.0005501825362444 ; 0.0000000096857544 ; 0.0007028728723526 ; 0.0021205805242062
	130 ; 1777.5000000000000000 ; 77.6499938964843750 ; -0.0014305450022221 ; -0.0006423648446798 ; 0.0000000079162419 ; 0.0005594156682491 ; 0.0029136501252651
	131 ; 1783.5000000000000000 ; 78.2500000000000000 ; -0.0017788782715797 ; -0.0009644590318203 ; -0.0000000070780515 ; 0.0007386291399598 ; 0.0037975423038006
	132 ; 1789.5000000000000000 ; 78.8499984741210938 ; -0.0024060131981969 ; -0.0009578382596374 ; 0.0000000018160791 ; 0.0008393642492592 ; 0.0039635803550482
	133 ; 1795.5000000000000000 ; 79.4499969482421875 ; -0.0028547151014209 ; -0.0015846220776439 ; 0.0000000020954758 ; 0.0014718761667609 ; 0.0030492711812258
	134 ; 1801.5000000000000000 ; 80.0500030517578125 ; -0.0057785790413618 ; -0.0029014097526670 ; 0.0000000033061951 ; 0.0030952244997025 ; 0.0047253053635359
	135 ; 1807.5000000000000000 ; 80.6499938964843750 ; -0.0093693472445011 ; -0.0031626699492335 ; 0.0000000033527612 ; 0.0037679448723793 ; 0.0059548970311880
	136 ; 1813.5000000000000000 ; 81.2500000000000000 ; -0.0108807608485222 ; -0.0040012313984334 ; -0.0000000037252903 ; 0.0045654335990548 ; 0.0066312495619059
	137 ; 1819.5000000000000000 ; 81.8500061035156250 ; -0.0109650017693639 ; -0.0040366384200752 ; -0.0000000010710209 ; 0.0043128235265613 ; 0.0064747892320156
	138 ; 1825.5000000000000000 ; 82.4499969482421875 ; -0.0076625961810350 ; -0.0033468562178314 ; 0.0000000022584572 ; 0.0031447671353817 ; 0.0050402893684804
	139 ; 1831.5000000000000000 ; 83.0500030517578125 ; -0.0032267253845930 ; -0.0019063334912062 ; -0.0000000020023436 ; 0.0018161805346608 ; 0.0036074407398701
	140 ; 1837.5000000000000000 ; 83.6500015258789062 ; -0.0017539151012897 ; -0.0011287368834019 ; -0.0000000060535967 ; 0.0011977199465036 ; 0.0026353970170021
	141 ; 1843.5000000000000000 ; 84.2500000000000000 ; -0.0017055682837963 ; -0.0008419584482908 ; 0.0000000076834112 ; 0.0007023327052593 ; 0.0025583859533072
	142 ; 1849.5000000000000000 ; 84.8499984741210938 ; -0.0026702871546149 ; -0.0006835018284619 ; -0.0000000018626451 ; 0.0006500491872430 ; 0.0014327503740788
	143 ; 1855.5000000000000000 ; 85.4499969482421875 ; -0.0029315494466573 ; -0.0004521073133219 ; -0.0000000002793968 ; 0.0006940288003534 ; 0.0014854393666610
	144 ; 1861.5000000000000000 ; 86.0500030517578125 ; -0.0025506436359137 ; -0.0004206632729620 ; 0.0000000002619345 ; 0.0006409895140678 ; 0.0014127577887848
	145 ; 1867.5000000000000000 ; 86.6500015258789062 ; -0.0016246689483523 ; -0.0006391429342330 ; 0.0000000012805685 ; 0.0006899605505168 ; 0.0023486353456974
	146 ; 1873.5000000000000000 ; 87.2500000000000000 ; -0.0018453169614077 ; -0.0006412034854293 ; 0.0000000016996637 ; 0.0006259600631893 ; 0.0042714802548289
	147 ; 1879.5000000000000000 ; 87.8499984741210938 ; -0.0018147965893149 ; -0.0005125007592142 ; -0.0000000021187589 ; 0.0004165694117546 ; 0.0041384045034647
	148 ; 1885.5000000000000000 ; 88.4499969482421875 ; -0.0024970043450594 ; -0.0007203714922071 ; 0.0000000025611371 ; 0.0007214052602649 ; 0.0032825861126184
	149 ; 1891.5000000000000000 ; 89.0500030517578125 ; -0.0020904652774334 ; -0.0006513511762023 ; 0.0000000017695129 ; 0.0005196360871196 ; 0.0036192964762449
	150 ; 1897.5000000000000000 ; 89.6499938964843750 ; -0.0018534306436777 ; -0.0008202632889152 ; 0.0000000027474016 ; 0.0003828182816505 ; 0.0045605748891830
	151 ; 1903.5000000000000000 ; 90.2500000000000000 ; -0.0029094647616148 ; -0.0014033392071724 ; -0.0000000022351743 ; 0.0006629927083850 ; 0.0051242848858237
	152 ; 1909.5000000000000000 ; 90.8500061035156250 ; -0.0034629460424185 ; -0.0018585841171443 ; -0.0000000013271346 ; 0.0012538558803499 ; 0.0054587982594967
	153 ; 1915.5000000000000000 ; 91.4499969482421875 ; -0.0034747198224068 ; -0.0017987615428865 ; 0.0000000011641532 ; 0.0017350360285491 ; 0.0044174105860293
	154 ; 1921.5000000000000000 ; 92.0500030517578125 ; -0.0031927037052810 ; -0.0015265108086169 ; 0.0000000006752089 ; 0.0020214482210577 ; 0.0048138080164790
	155 ; 1927.5000000000000000 ; 92.6500015258789062 ; -0.0032749343663454 ; -0.0016201098915190 ; -0.0000000003550667 ; 0.0012730655726045 ; 0.0047710780054331
	156 ; 1933.5000000000000000 ; 93.2500000000000000 ; -0.0036141402088106 ; -0.0018733970355242 ; 0.0000000012689270 ; 0.0018680826760828 ; 0.0046973126009107
	157 ; 1939.5000000000000000 ; 93.8500061035156250 ; -0.0039254585281014 ; -0.0020309132523835 ; -0.0000000008789357 ; 0.0019659667741507 ; 0.0057765445671976
	158 ; 1945.5000000000000000 ; 94.4499969482421875 ; -0.0038863914087415 ; -0.0021102419123054 ; -0.0000000002735760 ; 0.0018987654475495 ; 0.0058449120260775
	159 ; 1951.5000000000000000 ; 95.0500030517578125 ; -0.0034236884675920 ; -0.0018927671480924 ; 0.0000000011874363 ; 0.0018920100992545 ; 0.0037157461047173
	160 ; 1957.5000000000000000 ; 95.6500015258789062 ; -0.0034335628151894 ; -0.0007576723583043 ; 0.0000000023050233 ; 0.0008669295348227 ; 0.0019115190953016
	161 ; 1963.5000000000000000 ; 96.2500000000000000 ; -0.0042637437582016 ; -0.0008259587921202 ; 0.0000000014435499 ; 0.0009141070768237 ; 0.0018613794818521
	162 ; 1969.5000000000000000 ; 96.8499984741210938 ; -0.0042515341192484 ; -0.0005034101195633 ; 0.0000000025378539 ; 0.0008482905104756 ; 0.0018735909834504
	163 ; 1975.5000000000000000 ; 97.4499969482421875 ; -0.0030599823221564 ; -0.0003107329830527 ; 0.0000000007916242 ; 0.0005765021778643 ; 0.0013571688905358
	164 ; 1981.5000000000000000 ; 98.0500030517578125 ; -0.0027132607065141 ; -0.0008254438871518 ; -0.0000000007101335 ; 0.0008173076203093 ; 0.0019465681398287
	165 ; 1987.5000000000000000 ; 98.6499938964843750 ; -0.0023531096521765 ; -0.0009173055877909 ; 0.0000000007799826 ; 0.0009885531617329 ; 0.0018183791544288
	166 ; 1993.5000000000000000 ; 99.2500000000000000 ; -0.0012030671350658 ; -0.0005871062166989 ; -0.0000000006286427 ; 0.0007172250188887 ; 0.0015025846660137
	167 ; 1999.5000000000000000 ; 99.8499984741210938 ; -0.0010649724863470 ; -0.0004076948389411 ; 0.0000000024447218 ; 0.0003868630155921 ; 0.0014818338677287
	168 ; 2005.5000000000000000 ; 100.4499969482421875 ; -0.0013505453243852 ; -0.0004734033718705 ; 0.0000000008847564 ; 0.0004486101679504 ; 0.0013084160163999
	169 ; 2011.5000000000000000 ; 101.0500030517578125 ; -0.0024307267740369 ; -0.0003713965415955 ; 0.0000000022817404 ; 0.0005206684581935 ; 0.0018553864210844
	170 ; 2017.5000000000000000 ; 101.6499938964843750 ; -0.0029837749898434 ; -0.0003105150535703 ; -0.0000000014435499 ; 0.0004555019550025 ; 0.0018895678222179
	171 ; 2023.5000000000000000 ; 102.2500000000000000 ; -0.0029447074048221 ; -0.0003900609444827 ; 0.0000000006170012 ; 0.0005021647084504 ; 0.0015841384883970
	172 ; 2029.5000000000000000 ; 102.8500061035156250 ; -0.0024673542939126 ; -0.0003483619657345 ; -0.0000000004132744 ; 0.0003153204161208 ; 0.0021554972045124
	173 ; 2035.5000000000000000 ; 103.4499969482421875 ; -0.0020832731388509 ; -0.0003562029451132 ; 0.0000000011757948 ; 0.0004294561222196 ; 0.0024265265092254
	174 ; 2041.5000000000000000 ; 104.0500030517578125 ; -0.0024104630574584 ; -0.0007014870643616 ; 0.0000000008265488 ; 0.0007636172231287 ; 0.0018881303258240
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	294 ; 2762.5000000000000000 ; 176.1499938964843750 ; -0.0084153469651937 ; -0.0023169731721282 ; 0.0000000014901161 ; 0.0026704794727266 ; 0.0036994675174356
	295 ; 2768.5000000000000000 ; 176.7500000000000000 ; -0.0099206566810608 ; -0.0030653548892587 ; 0.0000000003026798 ; 0.0033263757359236 ; 0.0048067811876535
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	297 ; 2780.5000000000000000 ; 177.9499969482421875 ; -0.0027640219777822 ; -0.0013423818163574 ; -0.0000000017229468 ; 0.0009735748171806 ; 0.0059159640222788
	298 ; 2786.5000000000000000 ; 178.5499877929687500 ; -0.0031341030262411 ; -0.0023622252047062 ; 0.0000000018393621 ; 0.0014151730574667 ; 0.0078815380111337
	299 ; 2792.5000000000000000 ; 179.1499938964843750 ; -0.0034205410629511 ; -0.0023637171834707 ; 0.0000000006519258 ; 0.0013072768924758 ; 0.0074823196046054
	300 ; 2798.5000000000000000 ; 179.7500000000000000 ; -0.0024128232616931 ; -0.0016312064835802 ; -0.0000000003667083 ; 0.0009451441001147 ; 0.0060493098571897
	301 ; 2804.5000000000000000 ; 180.3500061035156250 ; -0.0019829473458230 ; -0.0004877833416685 ; -0.0000000001418812 ; 0.0003499111626297 ; 0.0024941884912550
	302 ; 2810.5000000000000000 ; 180.9499969482421875 ; -0.0027117959689349 ; -0.0003208249399904 ; 0.0000000001469743 ; 0.0005236520082690 ; 0.0008357831975445
	303 ; 2816.5000000000000000 ; 181.5500030517578125 ; -0.0027813846245408 ; -0.0002403028775007 ; 0.0000000003958121 ; 0.0003069913946092 ; 0.0011910514440387
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	308 ; 2846.5000000000000000 ; 184.5500030517578125 ; -0.0057172626256943 ; -0.0016572510357946 ; -0.0000000011117663 ; 0.0018108915537596 ; 0.0033032069914043
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	312 ; 2870.5000000000000000 ; 186.9499969482421875 ; -0.0028255796059966 ; -0.0002766849938780 ; -0.0000000028870999 ; 0.0004280968569219 ; 0.0014757271856070
	313 ; 2876.5000000000000000 ; 187.5500030517578125 ; -0.0043199025094509 ; -0.0003565819934011 ; 0.0000000021886080 ; 0.0007166545838118 ; 0.0019652880728245
	314 ; 2882.5000000000000000 ; 188.1499938964843750 ; -0.0044859386980534 ; -0.0003790990449488 ; 0.0000000012805685 ; 0.0006523579359055 ; 0.0015709009021521
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	319 ; 2912.5000000000000000 ; 191.1499938964843750 ; -0.0045652948319912 ; -0.0002908483147621 ; -0.0000000023748725 ; 0.0005627730861306 ; 0.0028055030852556
	320 ; 2918.5000000000000000 ; 191.7500000000000000 ; -0.0058300960808992 ; -0.0004164846614003 ; -0.0000000019557773 ; 0.0010389611124992 ; 0.0015170471742749
	321 ; 2924.5000000000000000 ; 192.3499908447265625 ; -0.0055358717218041 ; -0.0009322836995125 ; -0.0000000014435499 ; 0.0012528789229691 ; 0.0019967053085566
	322 ; 2930.5000000000000000 ; 192.9499969482421875 ; -0.0023101349361241 ; -0.0008988021872938 ; 0.0000000013504178 ; 0.0008810372091830 ; 0.0017965659499168
	323 ; 2936.5000000000000000 ; 193.5500030517578125 ; -0.0015309639275074 ; -0.0003984728828073 ; -0.0000000027008356 ; 0.0002918522804976 ; 0.0033482667058706
	324 ; 2942.5000000000000000 ; 194.1499938964843750 ; -0.0020449422299862 ; -0.0003847675397992 ; -0.0000000032596290 ; 0.0002352083101869 ; 0.0032567027956247
	325 ; 2948.5000000000000000 ; 194.7500000000000000 ; -0.0025735674425960 ; -0.0003876453265548 ; 0.0000000019557773 ; 0.0004131249152124 ; 0.0025842618197203
	326 ; 2954.5000000000000000 ; 195.3500061035156250 ; -0.0034647907596081 ; -0.0007569948211312 ; -0.0000000013271346 ; 0.0009731154423207 ; 0.0021889484487474
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	329 ; 2972.5000000000000000 ; 197.1499938964843750 ; -0.0038935802876949 ; -0.0011511663906276 ; -0.0000000019790605 ; 0.0013696490786970 ; 0.0024594087153673
	330 ; 2978.5000000000000000 ; 197.7500000000000000 ; -0.0039592618122697 ; -0.0020851176232100 ; 0.0000000023283064 ; 0.0020493664778769 ; 0.0037474092096090
	331 ; 2984.5000000000000000 ; 198.3500061035156250 ; -0.0038007944822311 ; -0.0023363688960671 ; -0.0000000042375179 ; 0.0021097296848893 ; 0.0041455961763859
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	411 ; 3464.5000000000000000 ; 246.3500061035156250 ; -0.0054222238250077 ; -0.0045981486327946 ; 0.0000000004773028 ; 0.0037762732245028 ; 0.0137792304158211
	412 ; 3470.5000000000000000 ; 246.9499816894531250 ; -0.0085317371413112 ; -0.0058659883216023 ; -0.0000000028405338 ; 0.0060352273285389 ; 0.0137084210291505
	413 ; 3476.5000000000000000 ; 247.5499877929687500 ; -0.0093035027384758 ; -0.0059258146211505 ; -0.0000000033061951 ; 0.0068702939897776 ; 0.0114869549870491
	414 ; 3482.5000000000000000 ; 248.1499938964843750 ; -0.0083036245778203 ; -0.0047764196060598 ; -0.0000000040512531 ; 0.0047550443559885 ; 0.0082634473219514
	415 ; 3488.5000000000000000 ; 248.7500000000000000 ; -0.0134457796812057 ; -0.0033072791993618 ; -0.0000000078231093 ; 0.0030208379030228 ; 0.0057125929743052
	416 ; 3494.5000000000000000 ; 249.3500061035156250 ; -0.0182461608201265 ; -0.0009259637445211 ; 0.0000000039115546 ; 0.0036568474024534 ; 0.0040954872965813
	417 ; 3500.5000000000000000 ; 249.9500122070312500 ; -0.0203317049890757 ; -0.0049388450570405 ; 0.0000000082887706 ; 0.0076347654685378 ; 0.0099188163876534
	418 ; 3506.5000000000000000 ; 250.5500030517578125 ; -0.0191267207264900 ; -0.0051195318810642 ; 0.0000000013504178 ; 0.0075761638581753 ; 0.0103973895311356
	419 ; 3512.5000000000000000 ; 251.1499938964843750 ; -0.0067497240379453 ; -0.0022072584833950 ; -0.0000000005238689 ; 0.0029833165463060 ; 0.0074735288508236
	420 ; 3518.5000000000000000 ; 251.7500000000000000 ; -0.0031612049788237 ; -0.0020875595510006 ; 0.0000000013504178 ; 0.0009637838229537 ; 0.0115108881145716
	421 ; 3524.5000000000000000 ; 252.3500061035156250 ; -0.0045529771596193 ; -0.0031008683145046 ; -0.0000000012572855 ; 0.0007654093205929 ; 0.0139159653335810
	422 ; 3530.5000000000000000 ; 252.9500122070312500 ; -0.0047397688031197 ; -0.0030867625027895 ; -0.0000000046566129 ; 0.0008212411776185 ; 0.0139245102182031
	423 ; 3536.5000000000000000 ; 253.5500183105468750 ; -0.0065564736723900 ; -0.0031091924756765 ; -0.0000000063329937 ; 0.0027768332511187 ; 0.0092596355825663
	424 ; 3542.5000000000000000 ; 254.1499938964843750 ; -0.0084702856838703 ; -0.0046743508428335 ; 0.0000000056810676 ; 0.0043513216078281 ; 0.0086256079375744
	425 ; 3548.5000000000000000 ; 254.7499847412109375 ; -0.0077573060989380 ; -0.0046356152743101 ; -0.0000000056810676 ; 0.0039875078946352 ; 0.0081665664911270
	426 ; 3554.5000000000000000 ; 255.3499908447265625 ; -0.0058002807199955 ; -0.0031658969819546 ; -0.0000000094994901 ; 0.0029955264180899 ; 0.0060703642666340
	427 ; 3560.5000000000000000 ; 255.9500122070312500 ; -0.0036711134016514 ; -0.0017281156033278 ; -0.0000000032130629 ; 0.0014341361820698 ; 0.0056370431557298
	428 ; 3566.5000000000000000 ; 256.5499877929687500 ; -0.0051963659934700 ; -0.0033626733347774 ; -0.0000000011525116 ; 0.0028432437684387 ; 0.0063573434017599
	429 ; 3572.5000000000000000 ; 257.1500244140625000 ; -0.0055041303858161 ; -0.0036164470948279 ; 0.0000000022468156 ; 0.0031931945122778 ; 0.0057082045823336
	430 ; 3578.5000000000000000 ; 257.7500000000000000 ; -0.0053234435617924 ; -0.0033814483322203 ; 0.0000000041211026 ; 0.0027816295623779 ; 0.0062893331050873
	431 ; 3584.5000000000000000 ; 258.3499755859375000 ; -0.0061179716140032 ; -0.0038252919912338 ; 0.0000000021886080 ; 0.0030461242422462 ; 0.0065432675182819
	432 ; 3590.5000000000000000 ; 258.9499816894531250 ; -0.0067784488201141 ; -0.0030484506860375 ; 0.0000000050291420 ; 0.0028448458760977 ; 0.0060292612761259
	433 ; 3596.5000000000000000 ; 259.5499877929687500 ; -0.0061655864119530 ; -0.0017061661928892 ; -0.0000000071711836 ; 0.0015676449984312 ; 0.0034212507307529
	434 ; 3602.5000000000000000 ; 260.1499938964843750 ; -0.0058609433472157 ; -0.0005472265183926 ; 0.0000000062398611 ; 0.0010021422058344 ; 0.0024685561656952
	435 ; 3608.5000000000000000 ; 260.7500000000000000 ; -0.0060575045645237 ; -0.0006304346024990 ; 0.0000000071711836 ; 0.0008213482797146 ; 0.0040917769074440
	436 ; 3614.5000000000000000 ; 261.3500061035156250 ; -0.0034095551818609 ; -0.0020104851573706 ; -0.0000000061467289 ; 0.0015606433153152 ; 0.0085698571056128
	437 ; 3620.5000000000000000 ; 261.9500122070312500 ; -0.0035499520599842 ; -0.0020184875465930 ; 0.0000000018626451 ; 0.0020306725054979 ; 0.0083781797438860
	438 ; 3626.5000000000000000 ; 262.5499877929687500 ; -0.0025642071850598 ; -0.0009600347839296 ; 0.0000000016996637 ; 0.0008132942020893 ; 0.0038427161052823
	439 ; 3632.5000000000000000 ; 263.1499938964843750 ; -0.0026541447732598 ; -0.0011168748605996 ; 0.0000000001513399 ; 0.0009912655223161 ; 0.0037233156617731
	440 ; 3638.5000000000000000 ; 263.7500000000000000 ; -0.0062922840006649 ; -0.0021938560530543 ; 0.0000000003376044 ; 0.0030305224936455 ; 0.0039711757563055
	441 ; 3644.5000000000000000 ; 264.3500061035156250 ; -0.0080466493964195 ; -0.0034708674065769 ; -0.0000000005355105 ; 0.0041592684574425 ; 0.0057156109251082
	442 ; 3650.5000000000000000 ; 264.9500122070312500 ; -0.0074667437002063 ; -0.0031946292147040 ; 0.0000000005122274 ; 0.0038385642692447 ; 0.0055982186459005
	443 ; 3656.5000000000000000 ; 265.5499877929687500 ; -0.0043489588424563 ; -0.0019401898607612 ; -0.0000000008323696 ; 0.0016569017898291 ; 0.0038403822109103
	444 ; 3662.5000000000000000 ; 266.1499938964843750 ; -0.0044380798935890 ; -0.0011671721003950 ; 0.0000000019557773 ; 0.0010815290734172 ; 0.0026193410158157
	445 ; 3668.5000000000000000 ; 266.7500000000000000 ; -0.0027618501335382 ; -0.0007579438388348 ; 0.0000000042375179 ; 0.0008757458999753 ; 0.0018819449469447
	446 ; 3674.5000000000000000 ; 267.3500061035156250 ; -0.0020771957933903 ; -0.0005051996558905 ; 0.0000000022351743 ; 0.0005418043583632 ; 0.0018124356865883
	447 ; 3680.5000000000000000 ; 267.9500122070312500 ; -0.0029044467955828 ; -0.0008950587362051 ; -0.0000000020489097 ; 0.0007723271846771 ; 0.0025827148929238
	448 ; 3686.5000000000000000 ; 268.5500183105468750 ; -0.0023163221776485 ; -0.0009526293724775 ; 0.0000000019790605 ; 0.0006673326715827 ; 0.0025119064375758
	449 ; 3692.5000000000000000 ; 269.1500244140625000 ; -0.0033310118597001 ; -0.0004738126881421 ; 0.0000000014086254 ; 0.0009229796123691 ; 0.0019979262724519
	450 ; 3698.5000000000000000 ; 269.7500000000000000 ; -0.0058796368539333 ; -0.0009540132014081 ; -0.0000000010244549 ; 0.0015978924930096 ; 0.0025302174035460
	451 ; 3704.5000000000000000 ; 270.3499755859375000 ; -0.0075607504695654 ; -0.0003985257353634 ; 0.0000000013504178 ; 0.0015258085913956 ; 0.0019625211134553
	452 ; 3710.5000000000000000 ; 270.9500122070312500 ; -0.0084217209368944 ; -0.0007851547561586 ; 0.0000000015133992 ; 0.0021763346157968 ; 0.0028785960748792
	453 ; 3716.5000000000000000 ; 271.5499877929687500 ; -0.0082398150116205 ; -0.0013882573693991 ; -0.0000000015366822 ; 0.0025343126617372 ; 0.0031867101788521
	454 ; 3722.5000000000000000 ; 272.1499938964843750 ; -0.0070873284712434 ; -0.0013023097999394 ; 0.0000000013737008 ; 0.0021888688206673 ; 0.0028814990073442
	455 ; 3728.5000000000000000 ; 272.7500000000000000 ; -0.0030865967273712 ; -0.0010899887420237 ; 0.0000000010244549 ; 0.0006962544284761 ; 0.0046643484383821
	456 ; 3734.5000000000000000 ; 273.3499755859375000 ; -0.0039601558819413 ; -0.0026871864683926 ; 0.0000000024912878 ; 0.0019389204680920 ; 0.0078293113037944
	457 ; 3740.5000000000000000 ; 273.9499816894531250 ; -0.0040651513263583 ; -0.0028680381365120 ; 0.0000000018859283 ; 0.0023735417053103 ; 0.0076718246564269
	458 ; 3746.5000000000000000 ; 274.5499877929687500 ; -0.0023944284766912 ; -0.0018003890290856 ; -0.0000000010011718 ; 0.0013879337348044 ; 0.0050441967323422
	459 ; 3752.5000000000000000 ; 275.1499938964843750 ; -0.0025611156597733 ; -0.0012816353701055 ; -0.0000000004656613 ; 0.0011122929863632 ; 0.0025024628266692
	460 ; 3758.5000000000000000 ; 275.7500000000000000 ; -0.0021399229299277 ; -0.0011221120366827 ; -0.0000000010593795 ; 0.0008756632450968 ; 0.0019723966252059
	461 ; 3764.5000000000000000 ; 276.3500061035156250 ; -0.0017168838530779 ; -0.0011592530645430 ; -0.0000000010535587 ; 0.0010206461884081 ; 0.0019713926594704
	462 ; 3770.5000000000000000 ; 276.9500122070312500 ; -0.0023065544664860 ; -0.0011366808321327 ; -0.0000000010535587 ; 0.0011246909853071 ; 0.0017881281673908
	463 ; 3776.5000000000000000 ; 277.5499877929687500 ; -0.0027425345033407 ; -0.0007953295717016 ; -0.0000000001280569 ; 0.0008464182028547 ; 0.0016245350707322
	464 ; 3782.5000000000000000 ; 278.1499938964843750 ; -0.0030514099635184 ; -0.0008973387302831 ; -0.0000000003754394 ; 0.0009256377816200 ; 0.0013655240181834
	465 ; 3788.5000000000000000 ; 278.7500000000000000 ; -0.0030843997374177 ; -0.0002348767593503 ; 0.0000000003376044 ; 0.0005028704181314 ; 0.0011234162375331
	466 ; 3794.5000000000000000 ; 279.3500061035156250 ; -0.0029061567038298 ; -0.0001058466732502 ; -0.0000000016880222 ; 0.0005243835039437 ; 0.0013873367570341
	467 ; 3800.5000000000000000 ; 279.9500122070312500 ; -0.0027880584821105 ; -0.0003868034109473 ; 0.0000000024912878 ; 0.0006330702453852 ; 0.0020961929112673
	468 ; 3807.0000000000000000 ; 280.6000366210937500 ; -0.0021183546632528 ; -0.0014105588197708 ; 0.0000000032130629 ; 0.0010375487618148 ; 0.0043303500860929
\end{filecontents}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d70_v800_P.dtabxlbl.d\endcsname{deviation table, x axis label and unit}
\expandafter\def\csname oct2tex.water_d70_v800_P.dtabxlbl.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.water_d70_v800_P.dtabxlbl.v\endcsname{Time}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d70_v800_P.dtabylbl.d\endcsname{deviation table, y axis label and unit}
\expandafter\def\csname oct2tex.water_d70_v800_P.dtabylbl.u\endcsname{\ensuremath{\text{V}}}
\expandafter\def\csname oct2tex.water_d70_v800_P.dtabylbl.v\endcsname{Deviation}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d70_v800_P.dtabmin.d\endcsname{deviation table, minimum}
\expandafter\def\csname oct2tex.water_d70_v800_P.dtabmin.u\endcsname{\ensuremath{\text{V}}}
\expandafter\def\csname oct2tex.water_d70_v800_P.dtabmin.v\endcsname{-0.1573532372713089}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.water_d70_v800_P.dtabmax.d\endcsname{deviation table, maximum}
\expandafter\def\csname oct2tex.water_d70_v800_P.dtabmax.u\endcsname{\ensuremath{\text{V}}}
\expandafter\def\csname oct2tex.water_d70_v800_P.dtabmax.v\endcsname{0.1372815072536469}
%
% analysis results, aluminium cylinder, D = 50 mm, compression wave
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.t0.d\endcsname{time, pulse trigger event}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.t0.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.t0.v\endcsname{1.0000000000000000}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.t0a.d\endcsname{time, pulse trigger event, lower limit}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.t0a.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.t0a.v\endcsname{0.5000000000000000}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.t0b.d\endcsname{time, pulse trigger event, upper limit}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.t0b.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.t0b.v\endcsname{1.2000000476837158}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.t1.d\endcsname{time-of-flight, first appearance of wave}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.t1.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.t1.v\endcsname{7857.3803710937500000}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.t1a.d\endcsname{time-of-flight, first appearance of wave, lower limit}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.t1a.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.t1a.v\endcsname{8.0519771575927734}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.t1b.d\endcsname{time-of-flight, first appearance of wave, upper limit}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.t1b.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.t1b.v\endcsname{9.3724050521850586}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.t2.d\endcsname{time-of-flight, first reflection of wave}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.t2.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.t2.v\endcsname{23570.1406250000000000}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.t2a.d\endcsname{time-of-flight, first reflection of wave, lower limit}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.t2a.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.t2a.v\endcsname{23.1559295654296875}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.t2b.d\endcsname{time-of-flight, first reflection of wave, upper limit}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.t2b.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.t2b.v\endcsname{25.7172145843505859}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.t3.d\endcsname{time-of-flight, second reflection of wave}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.t3.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.t3.v\endcsname{39282.8984375000000000}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.t3a.d\endcsname{time-of-flight, second reflection of wave, lower limit}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.t3a.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.t3a.v\endcsname{38.2598838806152344}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.t3b.d\endcsname{time-of-flight, second reflection of wave, upper limit}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.t3b.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.t3b.v\endcsname{42.0620193481445312}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.umd.d\endcsname{ultrasonic measuring distance}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.umd.u\endcsname{\ensuremath{\text{mm}}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.umd.v\endcsname{49.7999999999999972}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.umda.d\endcsname{ultrasonic measuring distance, lower limit}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.umda.u\endcsname{\ensuremath{\text{mm}}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.umda.v\endcsname{49.7899999999999991}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.umdb.d\endcsname{ultrasonic measuring distance, upper limit}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.umdb.u\endcsname{\ensuremath{\text{mm}}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.umdb.v\endcsname{49.7899999999999991}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.cs.d\endcsname{speed of sound}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.cs.u\endcsname{\ensuremath{m/Sec}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.cs.v\endcsname{6.3387971723513319}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.csa.d\endcsname{speed of sound, lower limit}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.csa.u\endcsname{\ensuremath{m/Sec}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.csa.v\endcsname{6592.9758301766478326}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.csb.d\endcsname{speed of sound, upper limit}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.csb.u\endcsname{\ensuremath{m/Sec}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.csb.v\endcsname{6092.4540332229043997}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.tm.d\endcsname{environment temperature}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.tm.u\endcsname{\ensuremath{{}^{\circ} \text{Celsius}}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.tm.v\endcsname{20.1000000000000014}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.tma.d\endcsname{environment temperature, lower limit}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.tma.u\endcsname{\ensuremath{{}^{\circ} \text{Celsius}}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.tma.v\endcsname{19.8000000000000007}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.tmb.d\endcsname{environment temperature, upper limit}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.tmb.u\endcsname{\ensuremath{{}^{\circ} \text{Celsius}}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.tmb.v\endcsname{20.4000000000000021}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.hu.d\endcsname{humidity}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.hu.u\endcsname{\ensuremath{\%}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.hu.v\endcsname{62.1000000000000014}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.hua.d\endcsname{humidity, lower limit}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.hua.u\endcsname{\ensuremath{\%}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.hua.v\endcsname{58.8060000000000045}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.hub.d\endcsname{humidity, upper limit}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.hub.u\endcsname{\ensuremath{\%}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.hub.v\endcsname{65.3939999999999912}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.stab.d\endcsname{signal table, c1=sample index, c2=time signature, c3=ensemble average}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.stab.u\endcsname{\ensuremath{\text{V}}}
\begin{filecontents}[overwrite]{oct2tex.alucyl_d50_v800_P.stab.v}
	idx ; c1 ; c2 ; c3
	1 ; 1001.0000000000000000 ; 0.0000000000000000 ; -0.0000387959698855
	2 ; 1002.0000000000000000 ; 0.1000000014901161 ; -0.0001120470915339
	3 ; 1003.0000000000000000 ; 0.2000000029802322 ; 0.0000222466405830
	4 ; 1004.0000000000000000 ; 0.3000000119209290 ; -0.0000754215288907
	5 ; 1005.0000000000000000 ; 0.4000000059604645 ; 0.0000222466296691
	6 ; 1006.0000000000000000 ; 0.5000000000000000 ; -0.0000571087512071
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\end{filecontents}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.stabxlbl.d\endcsname{signal table, x axis label and unit}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.stabxlbl.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.stabxlbl.v\endcsname{Time}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.stabylbl.d\endcsname{signal table, y axis label and unit}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.stabylbl.u\endcsname{\ensuremath{\text{V}}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.stabylbl.v\endcsname{Amplitude}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.stabmin.d\endcsname{signal table, minimum}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.stabmin.u\endcsname{\ensuremath{\text{V}}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.stabmin.v\endcsname{-3.0972058773040771}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.stabmax.d\endcsname{signal table, maximum}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.stabmax.u\endcsname{\ensuremath{\text{V}}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.stabmax.v\endcsname{4.1894674301147461}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.dtab.d\endcsname{deviation table, c1=sample index, c2=time signature, c3=min, c4=q25, c5=mean, c6=q75, c7=max}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.dtab.u\endcsname{\ensuremath{\text{V}}}
\begin{filecontents}[overwrite]{oct2tex.alucyl_d50_v800_P.dtab.v}
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	457 ; 1457.0000000000000000 ; 45.6000022888183594 ; -0.0127985477447510 ; -0.0043120384216309 ; 0.0000000238418583 ; 0.0039638578891754 ; 0.0145398378372192
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\end{filecontents}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.dtabxlbl.d\endcsname{deviation table, x axis label and unit}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.dtabxlbl.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.dtabxlbl.v\endcsname{Time}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.dtabylbl.d\endcsname{deviation table, y axis label and unit}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.dtabylbl.u\endcsname{\ensuremath{\text{V}}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.dtabylbl.v\endcsname{Deviation}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.dtabmin.d\endcsname{deviation table, minimum}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.dtabmin.u\endcsname{\ensuremath{\text{V}}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.dtabmin.v\endcsname{-0.2961449623107910}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.dtabmax.d\endcsname{deviation table, maximum}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.dtabmax.u\endcsname{\ensuremath{\text{V}}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_P.dtabmax.v\endcsname{0.3285773992538452}
%
% analysis results, aluminium cylinder, D = 50 mm, shear wave
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.t0.d\endcsname{time, pulse trigger event}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.t0.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.t0.v\endcsname{1.0000000000000000}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.t0a.d\endcsname{time, pulse trigger event, lower limit}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.t0a.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.t0a.v\endcsname{0.5000000000000000}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.t0b.d\endcsname{time, pulse trigger event, upper limit}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.t0b.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.t0b.v\endcsname{1.2000000476837158}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.t1.d\endcsname{time-of-flight, first appearance of wave}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.t1.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.t1.v\endcsname{16.9634513854980469}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.t1a.d\endcsname{time-of-flight, first appearance of wave, lower limit}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.t1a.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.t1a.v\endcsname{16.2061176300048828}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.t1b.d\endcsname{time-of-flight, first appearance of wave, upper limit}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.t1b.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.t1b.v\endcsname{17.4283084869384766}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.t2.d\endcsname{time-of-flight, first reflection of wave}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.t2.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.t2.v\endcsname{48.8903541564941406}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.t2a.d\endcsname{time-of-flight, first reflection of wave, lower limit}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.t2a.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.t2a.v\endcsname{47.6183471679687500}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.t2b.d\endcsname{time-of-flight, first reflection of wave, upper limit}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.t2b.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.t2b.v\endcsname{49.8849258422851562}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.t3.d\endcsname{time-of-flight, second reflection of wave}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.t3.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.t3.v\endcsname{80.8172531127929688}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.t3a.d\endcsname{time-of-flight, second reflection of wave, lower limit}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.t3a.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.t3a.v\endcsname{79.0305786132812500}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.t3b.d\endcsname{time-of-flight, second reflection of wave, upper limit}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.t3b.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.t3b.v\endcsname{82.3415451049804688}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.umd.d\endcsname{ultrasonic measuring distance}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.umd.u\endcsname{\ensuremath{\text{mm}}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.umd.v\endcsname{49.7999999999999972}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.umda.d\endcsname{ultrasonic measuring distance, lower limit}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.umda.u\endcsname{\ensuremath{\text{mm}}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.umda.v\endcsname{49.7899999999999991}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.umdb.d\endcsname{ultrasonic measuring distance, upper limit}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.umdb.u\endcsname{\ensuremath{\text{mm}}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.umdb.v\endcsname{49.7899999999999991}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.cs.d\endcsname{speed of sound}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.cs.u\endcsname{\ensuremath{m/Sec}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.cs.v\endcsname{3119.6262079667671969}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.csa.d\endcsname{speed of sound, lower limit}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.csa.u\endcsname{\ensuremath{m/Sec}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.csa.v\endcsname{3170.1025064818759347}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.csb.d\endcsname{speed of sound, upper limit}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.csb.u\endcsname{\ensuremath{m/Sec}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.csb.v\endcsname{3068.0954022802739019}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.tm.d\endcsname{environment temperature}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.tm.u\endcsname{\ensuremath{{}^{\circ} \text{Celsius}}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.tm.v\endcsname{20.1000000000000014}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.tma.d\endcsname{environment temperature, lower limit}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.tma.u\endcsname{\ensuremath{{}^{\circ} \text{Celsius}}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.tma.v\endcsname{19.8000000000000007}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.tmb.d\endcsname{environment temperature, upper limit}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.tmb.u\endcsname{\ensuremath{{}^{\circ} \text{Celsius}}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.tmb.v\endcsname{20.4000000000000021}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.hu.d\endcsname{humidity}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.hu.u\endcsname{\ensuremath{\%}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.hu.v\endcsname{62.1000000000000014}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.hua.d\endcsname{humidity, lower limit}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.hua.u\endcsname{\ensuremath{\%}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.hua.v\endcsname{58.8060000000000045}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.hub.d\endcsname{humidity, upper limit}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.hub.u\endcsname{\ensuremath{\%}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.hub.v\endcsname{65.3939999999999912}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.stab.d\endcsname{signal table, c1=sample index, c2=time signature, c3=ensemble average}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.stab.u\endcsname{\ensuremath{\text{V}}}
\begin{filecontents}[overwrite]{oct2tex.alucyl_d50_v800_S.stab.v}
	idx ; c1 ; c2 ; c3
	1 ; 1001.5000000000000000 ; 0.0500000007450581 ; 0.0000126649856611
	2 ; 1003.5000000000000000 ; 0.2500000000000000 ; -0.0000007643899949
	3 ; 1005.5000000000000000 ; 0.4499999880790710 ; -0.0000068686495069
	4 ; 1007.5000000000000000 ; 0.6499999761581421 ; -0.0000007643772051
	5 ; 1009.5000000000000000 ; 0.8500000238418579 ; -0.0000080895042629
	6 ; 1011.5000000000000000 ; 1.0499999523162842 ; 0.0000090024204837
	7 ; 1013.5000000000000000 ; 1.2500000000000000 ; 0.0003911291132681
	8 ; 1015.5000000000000000 ; 1.4500000476837158 ; 0.0008129336056300
	9 ; 1017.5000000000000000 ; 1.6499999761581421 ; -0.0006240092916414
	10 ; 1019.5000000000000000 ; 1.8499999046325684 ; 0.0010662605054677
	11 ; 1021.5000000000000000 ; 2.0500001907348633 ; -0.0028783134184778
	12 ; 1023.5000000000000000 ; 2.2500000000000000 ; 0.0018164744833484
	13 ; 1025.5000000000000000 ; 2.4500000476837158 ; -0.0006319450330921
	14 ; 1027.5000000000000000 ; 2.6500000953674316 ; -0.0001399415486958
	15 ; 1029.5000000000000000 ; 2.8499999046325684 ; 0.0002507311874069
	16 ; 1031.5000000000000000 ; 3.0499999523162842 ; -0.0001014846930047
	17 ; 1033.5000000000000000 ; 3.2500000000000000 ; -0.0001020951094688
	18 ; 1035.5000000000000000 ; 3.4499998092651367 ; -0.0004652986244764
	19 ; 1037.5000000000000000 ; 3.6500000953674316 ; 0.0001793112896848
	20 ; 1039.5000000000000000 ; 3.8499999046325684 ; -0.0000495984750160
	21 ; 1041.5000000000000000 ; 4.0500001907348633 ; -0.0004463754012249
	22 ; 1043.5000000000000000 ; 4.2500000000000000 ; -0.0001484874810558
	23 ; 1045.5000000000000000 ; 4.4499998092651367 ; 0.0019532092846930
	24 ; 1047.5000000000000000 ; 4.6499996185302734 ; -0.0011068563908339
	25 ; 1049.5000000000000000 ; 4.8500003814697266 ; -0.0002003737317864
	26 ; 1051.5000000000000000 ; 5.0500001907348633 ; 0.0002879670937546
	27 ; 1053.5000000000000000 ; 5.2500000000000000 ; 0.0000865265319590
	28 ; 1055.5000000000000000 ; 5.4499998092651367 ; -0.0000538714702998
	29 ; 1057.5000000000000000 ; 5.6500000953674316 ; 0.0000450175757578
	30 ; 1059.5000000000000000 ; 5.8500003814697266 ; 0.0000816431202111
	31 ; 1061.5000000000000000 ; 6.0500001907348633 ; 0.0000486801254738
	32 ; 1063.5000000000000000 ; 6.2500000000000000 ; 0.0000065607177930
	33 ; 1065.5000000000000000 ; 6.4499998092651367 ; -0.0000184667405847
	34 ; 1067.5000000000000000 ; 6.6500000953674316 ; 0.0000144962632476
	35 ; 1069.5000000000000000 ; 6.8499994277954102 ; 0.0000279256382782
	36 ; 1071.5000000000000000 ; 7.0500001907348633 ; 0.0000083920122051
	37 ; 1073.5000000000000000 ; 7.2500000000000000 ; 0.0000120545573736
	38 ; 1075.5000000000000000 ; 7.4499998092651367 ; -0.0000276231294265
	39 ; 1077.5000000000000000 ; 7.6500000953674316 ; -0.0000288439823635
	40 ; 1079.5000000000000000 ; 7.8500003814697266 ; 0.0000157171198225
	41 ; 1081.5000000000000000 ; 8.0499992370605469 ; -0.0000099207800304
	42 ; 1083.5000000000000000 ; 8.2500000000000000 ; -0.0000135833379318
	43 ; 1085.5000000000000000 ; 8.4500007629394531 ; 0.0000114441336336
	44 ; 1087.5000000000000000 ; 8.6499996185302734 ; -0.0000129729141918
	45 ; 1089.5000000000000000 ; 8.8499994277954102 ; -0.0000032060918329
	46 ; 1091.5000000000000000 ; 9.0500001907348633 ; -0.0000080894915300
	47 ; 1093.5000000000000000 ; 9.2500000000000000 ; 0.0000083920003817
	48 ; 1095.5000000000000000 ; 9.4499998092651367 ; 0.0000816431202111
	49 ; 1097.5000000000000000 ; 9.6499996185302734 ; 0.0009801902342588
	50 ; 1099.5000000000000000 ; 9.8500003814697266 ; 0.0043088444508612
	51 ; 1101.5000000000000000 ; 10.0499992370605469 ; 0.0120435515418649
	52 ; 1103.5000000000000000 ; 10.2500000000000000 ; 0.0269287880510092
	53 ; 1105.5000000000000000 ; 10.4499998092651367 ; 0.0490048564970493
	54 ; 1107.5000000000000000 ; 10.6499996185302734 ; 0.0746812000870705
	55 ; 1109.5000000000000000 ; 10.8500003814697266 ; 0.0976204127073288
	56 ; 1111.5000000000000000 ; 11.0500001907348633 ; 0.1080885976552963
	57 ; 1113.5000000000000000 ; 11.2500000000000000 ; 0.1062567085027695
	58 ; 1115.5000000000000000 ; 11.4500007629394531 ; 0.0872877240180969
	59 ; 1117.5000000000000000 ; 11.6499996185302734 ; 0.0497984029352665
	60 ; 1119.5000000000000000 ; 11.8500003814697266 ; -0.0231475122272968
	61 ; 1121.5000000000000000 ; 12.0500001907348633 ; -0.0689807385206223
	62 ; 1123.5000000000000000 ; 12.2500000000000000 ; -0.1061752289533615
	63 ; 1125.5000000000000000 ; 12.4499998092651367 ; -0.1321134418249130
	64 ; 1127.5000000000000000 ; 12.6500005722045898 ; -0.1479668319225311
	65 ; 1129.5000000000000000 ; 12.8500003814697266 ; -0.1533825099468231
	66 ; 1131.5000000000000000 ; 13.0499992370605469 ; -0.1511166244745255
	67 ; 1133.5000000000000000 ; 13.2500000000000000 ; -0.1342877894639969
	68 ; 1135.5000000000000000 ; 13.4500007629394531 ; -0.0980828106403351
	69 ; 1137.5000000000000000 ; 13.6499996185302734 ; -0.0388574376702309
	70 ; 1139.5000000000000000 ; 13.8500003814697266 ; 0.0895261466503143
	71 ; 1141.5000000000000000 ; 14.0500001907348633 ; 0.1902098208665848
	72 ; 1143.5000000000000000 ; 14.2500000000000000 ; 0.2895890176296234
	73 ; 1145.5000000000000000 ; 14.4499998092651367 ; 0.3756810426712036
	74 ; 1147.5000000000000000 ; 14.6499996185302734 ; 0.4378187656402588
	75 ; 1149.5000000000000000 ; 14.8500003814697266 ; 0.4672053456306458
	76 ; 1151.5000000000000000 ; 15.0500001907348633 ; 0.4681673645973206
	77 ; 1153.5000000000000000 ; 15.2500000000000000 ; 0.4415833055973053
	78 ; 1155.5000000000000000 ; 15.4500007629394531 ; 0.3765863478183746
	79 ; 1157.5000000000000000 ; 15.6499996185302734 ; 0.2761529386043549
	80 ; 1159.5000000000000000 ; 15.8500003814697266 ; 0.1486453115940094
	81 ; 1161.5000000000000000 ; 16.0499992370605469 ; -0.0670591145753860
	82 ; 1163.5000000000000000 ; 16.2500000000000000 ; -0.2056722342967987
	83 ; 1165.5000000000000000 ; 16.4500007629394531 ; -0.3240704834461212
	84 ; 1167.5000000000000000 ; 16.6500015258789062 ; -0.4116122126579285
	85 ; 1169.5000000000000000 ; 16.8500003814697266 ; -0.4606929719448090
	86 ; 1171.5000000000000000 ; 17.0499992370605469 ; -0.4692681729793549
	87 ; 1173.5000000000000000 ; 17.2500000000000000 ; -0.4524119794368744
	88 ; 1175.5000000000000000 ; 17.4500007629394531 ; -0.3905446231365204
	89 ; 1177.5000000000000000 ; 17.6499996185302734 ; -0.2882353961467743
	90 ; 1179.5000000000000000 ; 17.8499984741210938 ; -0.1529326587915421
	91 ; 1181.5000000000000000 ; 18.0499992370605469 ; 0.0868842378258705
	92 ; 1183.5000000000000000 ; 18.2500000000000000 ; 0.2487875670194626
	93 ; 1185.5000000000000000 ; 18.4500007629394531 ; 0.3913567662239075
	94 ; 1187.5000000000000000 ; 18.6500015258789062 ; 0.4969850182533264
	95 ; 1189.5000000000000000 ; 18.8499984741210938 ; 0.5519995689392090
	96 ; 1191.5000000000000000 ; 19.0499992370605469 ; 0.5584059953689575
	97 ; 1193.5000000000000000 ; 19.2500000000000000 ; 0.5281752347946167
	98 ; 1195.5000000000000000 ; 19.4500007629394531 ; 0.4441483020782471
	99 ; 1197.5000000000000000 ; 19.6500015258789062 ; 0.3170191049575806
	100 ; 1199.5000000000000000 ; 19.8499984741210938 ; 0.1629702001810074
	101 ; 1201.5000000000000000 ; 20.0499992370605469 ; -0.0795600414276123
	102 ; 1203.5000000000000000 ; 20.2500000000000000 ; -0.2241785079240799
	103 ; 1205.5000000000000000 ; 20.4500007629394531 ; -0.3396412134170532
	104 ; 1207.5000000000000000 ; 20.6499996185302734 ; -0.4182586073875427
	105 ; 1209.5000000000000000 ; 20.8500003814697266 ; -0.4531108736991882
	106 ; 1211.5000000000000000 ; 21.0499992370605469 ; -0.4526108801364899
	107 ; 1213.5000000000000000 ; 21.2500000000000000 ; -0.4143603444099426
	108 ; 1215.5000000000000000 ; 21.4500007629394531 ; -0.3275785744190216
	109 ; 1217.5000000000000000 ; 21.6499996185302734 ; -0.1962063610553741
	110 ; 1219.5000000000000000 ; 21.8500003814697266 ; 0.0644687637686729
	111 ; 1221.5000000000000000 ; 22.0499992370605469 ; 0.2572358250617981
	112 ; 1223.5000000000000000 ; 22.2500000000000000 ; 0.4415381550788879
	113 ; 1225.5000000000000000 ; 22.4500007629394531 ; 0.5951462984085083
	114 ; 1227.5000000000000000 ; 22.6499996185302734 ; 0.6997886896133423
	115 ; 1229.5000000000000000 ; 22.8500003814697266 ; 0.7463317513465881
	116 ; 1231.5000000000000000 ; 23.0499992370605469 ; 0.7470007538795471
	117 ; 1233.5000000000000000 ; 23.2500000000000000 ; 0.7045150995254517
	118 ; 1235.5000000000000000 ; 23.4500007629394531 ; 0.6105016469955444
	119 ; 1237.5000000000000000 ; 23.6500015258789062 ; 0.4782045483589172
	120 ; 1239.5000000000000000 ; 23.8499984741210938 ; 0.3229762613773346
	121 ; 1241.5000000000000000 ; 24.0499992370605469 ; 0.1612353473901749
	122 ; 1243.5000000000000000 ; 24.2500000000000000 ; -0.0586962811648846
	123 ; 1245.5000000000000000 ; 24.4500007629394531 ; -0.1719694137573242
	124 ; 1247.5000000000000000 ; 24.6500015258789062 ; -0.2498426735401154
	125 ; 1249.5000000000000000 ; 24.8499984741210938 ; -0.2903023660182953
	126 ; 1251.5000000000000000 ; 25.0499992370605469 ; -0.2969443500041962
	127 ; 1253.5000000000000000 ; 25.2500000000000000 ; -0.2870743572711945
	128 ; 1255.5000000000000000 ; 25.4500007629394531 ; -0.2550294995307922
	129 ; 1257.5000000000000000 ; 25.6499996185302734 ; -0.2130919694900513
	130 ; 1259.5000000000000000 ; 25.8500003814697266 ; -0.1739294826984406
	131 ; 1261.5000000000000000 ; 26.0499992370605469 ; -0.1485009491443634
	132 ; 1263.5000000000000000 ; 26.2500000000000000 ; -0.1481401771306992
	133 ; 1265.5000000000000000 ; 26.4500007629394531 ; -0.1767789274454117
	134 ; 1267.5000000000000000 ; 26.6499996185302734 ; -0.2236614525318146
	135 ; 1269.5000000000000000 ; 26.8500003814697266 ; -0.2758785784244537
	136 ; 1271.5000000000000000 ; 27.0499992370605469 ; -0.3182152509689331
	137 ; 1273.5000000000000000 ; 27.2500000000000000 ; -0.3355867564678192
	138 ; 1275.5000000000000000 ; 27.4500007629394531 ; -0.3319993615150452
	139 ; 1277.5000000000000000 ; 27.6499996185302734 ; -0.2994867861270905
	140 ; 1279.5000000000000000 ; 27.8500003814697266 ; -0.2360128164291382
	141 ; 1281.5000000000000000 ; 28.0499992370605469 ; -0.1483806669712067
	142 ; 1283.5000000000000000 ; 28.2500000000000000 ; -0.0481902398169041
	143 ; 1285.5000000000000000 ; 28.4500007629394531 ; 0.0909325629472733
	144 ; 1287.5000000000000000 ; 28.6500015258789062 ; 0.1552714854478836
	145 ; 1289.5000000000000000 ; 28.8499984741210938 ; 0.1882638037204742
	146 ; 1291.5000000000000000 ; 29.0499992370605469 ; 0.1928212046623230
	147 ; 1293.5000000000000000 ; 29.2500000000000000 ; 0.1799272000789642
	148 ; 1295.5000000000000000 ; 29.4500007629394531 ; 0.1438052207231522
	149 ; 1297.5000000000000000 ; 29.6500015258789062 ; 0.0946103855967522
	150 ; 1299.5000000000000000 ; 29.8499984741210938 ; 0.0455400720238686
	151 ; 1301.5000000000000000 ; 30.0499992370605469 ; 0.0127180740237236
	152 ; 1303.5000000000000000 ; 30.2500000000000000 ; 0.0163891743868589
	153 ; 1305.5000000000000000 ; 30.4500007629394531 ; 0.0570331737399101
	154 ; 1307.5000000000000000 ; 30.6500015258789062 ; 0.1256804764270782
	155 ; 1309.5000000000000000 ; 30.8500003814697266 ; 0.2145932912826538
	156 ; 1311.5000000000000000 ; 31.0499992370605469 ; 0.3116627037525177
	157 ; 1313.5000000000000000 ; 31.2500000000000000 ; 0.4019514024257660
	158 ; 1315.5000000000000000 ; 31.4500007629394531 ; 0.4652642309665680
	159 ; 1317.5000000000000000 ; 31.6500015258789062 ; 0.4818629324436188
	160 ; 1319.5000000000000000 ; 31.8499984741210938 ; 0.4691861271858215
	161 ; 1321.5000000000000000 ; 32.0500030517578125 ; 0.4023701548576355
	162 ; 1323.5000000000000000 ; 32.2500000000000000 ; 0.2877583205699921
	163 ; 1325.5000000000000000 ; 32.4499969482421875 ; 0.1402373015880585
	164 ; 1327.5000000000000000 ; 32.6500015258789062 ; -0.0987292528152466
	165 ; 1329.5000000000000000 ; 32.8499984741210938 ; -0.2428459674119949
	166 ; 1331.5000000000000000 ; 33.0500030517578125 ; -0.3571701347827911
	167 ; 1333.5000000000000000 ; 33.2500000000000000 ; -0.4316495060920715
	168 ; 1335.5000000000000000 ; 33.4500007629394531 ; -0.4647682309150696
	169 ; 1337.5000000000000000 ; 33.6500015258789062 ; -0.4676555097103119
	170 ; 1339.5000000000000000 ; 33.8499984741210938 ; -0.4505433440208435
	171 ; 1341.5000000000000000 ; 34.0500030517578125 ; -0.4074003100395203
	172 ; 1343.5000000000000000 ; 34.2500000000000000 ; -0.3453273177146912
	173 ; 1345.5000000000000000 ; 34.4500007629394531 ; -0.2749073505401611
	174 ; 1347.5000000000000000 ; 34.6500015258789062 ; -0.2089752405881882
	175 ; 1349.5000000000000000 ; 34.8499984741210938 ; -0.1590796411037445
	176 ; 1351.5000000000000000 ; 35.0500030517578125 ; -0.1299616843461990
	177 ; 1353.5000000000000000 ; 35.2500000000000000 ; -0.1164688467979431
	178 ; 1355.5000000000000000 ; 35.4500007629394531 ; -0.1095362454652786
	179 ; 1357.5000000000000000 ; 35.6500015258789062 ; -0.1012368947267532
	180 ; 1359.5000000000000000 ; 35.8499984741210938 ; -0.0825999677181244
	181 ; 1361.5000000000000000 ; 36.0499992370605469 ; -0.0446418374776840
	182 ; 1363.5000000000000000 ; 36.2500000000000000 ; 0.0594547465443611
	183 ; 1365.5000000000000000 ; 36.4500007629394531 ; 0.1577950119972229
	184 ; 1367.5000000000000000 ; 36.6500015258789062 ; 0.2677907347679138
	185 ; 1369.5000000000000000 ; 36.8499984741210938 ; 0.3749143779277802
	186 ; 1371.5000000000000000 ; 37.0499992370605469 ; 0.4649058282375336
	187 ; 1373.5000000000000000 ; 37.2500000000000000 ; 0.5258654952049255
	188 ; 1375.5000000000000000 ; 37.4500007629394531 ; 0.5489475131034851
	189 ; 1377.5000000000000000 ; 37.6500015258789062 ; 0.5448794960975647
	190 ; 1379.5000000000000000 ; 37.8499984741210938 ; 0.5061791539192200
	191 ; 1381.5000000000000000 ; 38.0499992370605469 ; 0.4317169785499573
	192 ; 1383.5000000000000000 ; 38.2500000000000000 ; 0.3304490745067596
	193 ; 1385.5000000000000000 ; 38.4500007629394531 ; 0.2145157754421234
	194 ; 1387.5000000000000000 ; 38.6500015258789062 ; 0.0969324558973312
	195 ; 1389.5000000000000000 ; 38.8499984741210938 ; -0.0600569248199463
	196 ; 1391.5000000000000000 ; 39.0499992370605469 ; -0.1402089148759842
	197 ; 1393.5000000000000000 ; 39.2500000000000000 ; -0.1949311792850494
	198 ; 1395.5000000000000000 ; 39.4500007629394531 ; -0.2220512330532074
	199 ; 1397.5000000000000000 ; 39.6500015258789062 ; -0.2248707562685013
	200 ; 1399.5000000000000000 ; 39.8499984741210938 ; -0.2098316401243210
	201 ; 1401.5000000000000000 ; 40.0499992370605469 ; -0.1720286160707474
	202 ; 1403.5000000000000000 ; 40.2500000000000000 ; -0.1200581416487694
	203 ; 1405.5000000000000000 ; 40.4499969482421875 ; -0.0635607615113258
	204 ; 1407.5000000000000000 ; 40.6500015258789062 ; -0.0121586192399263
	205 ; 1409.5000000000000000 ; 40.8499984741210938 ; 0.0364856235682964
	206 ; 1411.5000000000000000 ; 41.0499992370605469 ; 0.0417871698737144
	207 ; 1413.5000000000000000 ; 41.2500000000000000 ; 0.0340707786381245
	208 ; 1415.5000000000000000 ; 41.4499969482421875 ; -0.0139782978221774
	209 ; 1417.5000000000000000 ; 41.6500015258789062 ; -0.0547089800238609
	210 ; 1419.5000000000000000 ; 41.8499984741210938 ; -0.0885937362909317
	211 ; 1421.5000000000000000 ; 42.0500030517578125 ; -0.1081413999199867
	212 ; 1423.5000000000000000 ; 42.2500000000000000 ; -0.1112582534551620
	213 ; 1425.5000000000000000 ; 42.4499969482421875 ; -0.1035418510437012
	214 ; 1427.5000000000000000 ; 42.6500015258789062 ; -0.0783410072326660
	215 ; 1429.5000000000000000 ; 42.8499984741210938 ; -0.0380425080657005
	216 ; 1431.5000000000000000 ; 43.0500030517578125 ; 0.0435635149478912
	217 ; 1433.5000000000000000 ; 43.2500000000000000 ; 0.1050401479005814
	218 ; 1435.5000000000000000 ; 43.4499969482421875 ; 0.1662603765726089
	219 ; 1437.5000000000000000 ; 43.6500015258789062 ; 0.2215595245361328
	220 ; 1439.5000000000000000 ; 43.8499984741210938 ; 0.2654210925102234
	221 ; 1441.5000000000000000 ; 44.0500030517578125 ; 0.2911669611930847
	222 ; 1443.5000000000000000 ; 44.2500000000000000 ; 0.2952733039855957
	223 ; 1445.5000000000000000 ; 44.4500007629394531 ; 0.2844736278057098
	224 ; 1447.5000000000000000 ; 44.6500015258789062 ; 0.2503508627414703
	225 ; 1449.5000000000000000 ; 44.8499984741210938 ; 0.1992801725864410
	226 ; 1451.5000000000000000 ; 45.0500030517578125 ; 0.1406706869602203
	227 ; 1453.5000000000000000 ; 45.2500000000000000 ; 0.0837594717741013
	228 ; 1455.5000000000000000 ; 45.4500007629394531 ; 0.0342996865510941
	229 ; 1457.5000000000000000 ; 45.6500015258789062 ; -0.0211746152490377
	230 ; 1459.5000000000000000 ; 45.8499984741210938 ; -0.0447981022298336
	231 ; 1461.5000000000000000 ; 46.0500030517578125 ; -0.0585754141211510
	232 ; 1463.5000000000000000 ; 46.2500000000000000 ; -0.0645545423030853
	233 ; 1465.5000000000000000 ; 46.4500007629394531 ; -0.0655458644032478
	234 ; 1467.5000000000000000 ; 46.6500015258789062 ; -0.0642700940370560
	235 ; 1469.5000000000000000 ; 46.8499984741210938 ; -0.0587335303425789
	236 ; 1471.5000000000000000 ; 47.0499992370605469 ; -0.0501277334988117
	237 ; 1473.5000000000000000 ; 47.2500000000000000 ; -0.0402180701494217
	238 ; 1475.5000000000000000 ; 47.4500007629394531 ; -0.0318509638309479
	239 ; 1477.5000000000000000 ; 47.6500015258789062 ; -0.0271866973489523
	240 ; 1479.5000000000000000 ; 47.8499984741210938 ; -0.0258120186626911
	241 ; 1481.5000000000000000 ; 48.0499992370605469 ; -0.0253957100212574
	242 ; 1483.5000000000000000 ; 48.2500000000000000 ; -0.0223026834428310
	243 ; 1485.5000000000000000 ; 48.4500007629394531 ; -0.0133709292858839
	244 ; 1487.5000000000000000 ; 48.6500015258789062 ; 0.0130293890833855
	245 ; 1489.5000000000000000 ; 48.8499984741210938 ; 0.0370478257536888
	246 ; 1491.5000000000000000 ; 49.0499992370605469 ; 0.0617706961929798
	247 ; 1493.5000000000000000 ; 49.2500000000000000 ; 0.0844651162624359
	248 ; 1495.5000000000000000 ; 49.4500007629394531 ; 0.1037991270422935
	249 ; 1497.5000000000000000 ; 49.6500015258789062 ; 0.1176667809486389
	250 ; 1499.5000000000000000 ; 49.8499984741210938 ; 0.1246915832161903
	251 ; 1501.5000000000000000 ; 50.0499992370605469 ; 0.1255431324243546
	252 ; 1503.5000000000000000 ; 50.2500000000000000 ; 0.1227223426103592
	253 ; 1505.5000000000000000 ; 50.4500007629394531 ; 0.1154161542654037
	254 ; 1507.5000000000000000 ; 50.6500015258789062 ; 0.1043839231133461
	255 ; 1509.5000000000000000 ; 50.8499984741210938 ; 0.0892453417181969
	256 ; 1511.5000000000000000 ; 51.0499992370605469 ; 0.0693454742431641
	257 ; 1513.5000000000000000 ; 51.2500000000000000 ; 0.0449259839951992
	258 ; 1515.5000000000000000 ; 51.4499969482421875 ; 0.0175892729312181
	259 ; 1517.5000000000000000 ; 51.6500015258789062 ; -0.0266171731054783
	260 ; 1519.5000000000000000 ; 51.8499984741210938 ; -0.0597376748919487
	261 ; 1521.5000000000000000 ; 52.0499992370605469 ; -0.0979607105255127
	262 ; 1523.5000000000000000 ; 52.2500000000000000 ; -0.1425029188394547
	263 ; 1525.5000000000000000 ; 52.4499969482421875 ; -0.1914645582437515
	264 ; 1527.5000000000000000 ; 52.6500015258789062 ; -0.2407552897930145
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	285 ; 1569.5000000000000000 ; 56.8499984741210938 ; 0.4335006773471832
	286 ; 1571.5000000000000000 ; 57.0499992370605469 ; 0.4001982212066650
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	288 ; 1575.5000000000000000 ; 57.4500007629394531 ; 0.2630507349967957
	289 ; 1577.5000000000000000 ; 57.6500015258789062 ; 0.1638424694538116
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	428 ; 1855.5000000000000000 ; 85.4499969482421875 ; 0.1388730257749557
	429 ; 1857.5000000000000000 ; 85.6499938964843750 ; 0.1584432423114777
	430 ; 1859.5000000000000000 ; 85.8499984741210938 ; 0.1611767411231995
	431 ; 1861.5000000000000000 ; 86.0500030517578125 ; 0.1527400761842728
	432 ; 1863.5000000000000000 ; 86.2500000000000000 ; 0.1274488568305969
	433 ; 1865.5000000000000000 ; 86.4499969482421875 ; 0.0885030701756477
	434 ; 1867.5000000000000000 ; 86.6499938964843750 ; 0.0397056229412556
	435 ; 1869.5000000000000000 ; 86.8499984741210938 ; -0.0411459207534790
	436 ; 1871.5000000000000000 ; 87.0500030517578125 ; -0.0946546569466591
	437 ; 1873.5000000000000000 ; 87.2500000000000000 ; -0.1444617360830307
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	439 ; 1877.5000000000000000 ; 87.6499938964843750 ; -0.2207948863506317
	440 ; 1879.5000000000000000 ; 87.8499984741210938 ; -0.2412856519222260
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	442 ; 1883.5000000000000000 ; 88.2500000000000000 ; -0.2448414117097855
	443 ; 1885.5000000000000000 ; 88.4499969482421875 ; -0.2294452488422394
	444 ; 1887.5000000000000000 ; 88.6499938964843750 ; -0.2020841538906097
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	446 ; 1891.5000000000000000 ; 89.0500030517578125 ; -0.1263503879308701
	447 ; 1893.5000000000000000 ; 89.2500000000000000 ; -0.0855000913143158
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	449 ; 1897.5000000000000000 ; 89.6499938964843750 ; -0.0092450575903058
	450 ; 1899.5000000000000000 ; 89.8500061035156250 ; 0.0419379509985447
	451 ; 1901.5000000000000000 ; 90.0500030517578125 ; 0.0741721019148827
	452 ; 1903.5000000000000000 ; 90.2500000000000000 ; 0.1042362079024315
	453 ; 1905.5000000000000000 ; 90.4499969482421875 ; 0.1303355842828751
	454 ; 1907.5000000000000000 ; 90.6499938964843750 ; 0.1512683182954788
	455 ; 1909.5000000000000000 ; 90.8500061035156250 ; 0.1659002155065536
	456 ; 1911.5000000000000000 ; 91.0500030517578125 ; 0.1737460643053055
	457 ; 1913.5000000000000000 ; 91.2500000000000000 ; 0.1752476543188095
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	459 ; 1917.5000000000000000 ; 91.6499938964843750 ; 0.1650999486446381
	460 ; 1919.5000000000000000 ; 91.8500061035156250 ; 0.1501567214727402
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	464 ; 1927.5000000000000000 ; 92.6499938964843750 ; -0.0425437986850739
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	471 ; 1941.5000000000000000 ; 94.0500030517578125 ; -0.3339294195175171
	472 ; 1943.5000000000000000 ; 94.2500000000000000 ; -0.3168949782848358
	473 ; 1945.5000000000000000 ; 94.4499969482421875 ; -0.2838989794254303
	474 ; 1947.5000000000000000 ; 94.6500015258789062 ; -0.2383184432983398
	475 ; 1949.5000000000000000 ; 94.8500061035156250 ; -0.1835296303033829
	476 ; 1951.5000000000000000 ; 95.0500030517578125 ; -0.1228361874818802
\end{filecontents}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.stabxlbl.d\endcsname{signal table, x axis label and unit}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.stabxlbl.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.stabxlbl.v\endcsname{Time}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.stabylbl.d\endcsname{signal table, y axis label and unit}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.stabylbl.u\endcsname{\ensuremath{\text{V}}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.stabylbl.v\endcsname{Amplitude}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.stabmin.d\endcsname{signal table, minimum}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.stabmin.u\endcsname{\ensuremath{\text{V}}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.stabmin.v\endcsname{-0.4692681729793549}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.stabmax.d\endcsname{signal table, maximum}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.stabmax.u\endcsname{\ensuremath{\text{V}}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.stabmax.v\endcsname{0.7470007538795471}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.dtab.d\endcsname{deviation table, c1=sample index, c2=time signature, c3=min, c4=q25, c5=mean, c6=q75, c7=max}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.dtab.u\endcsname{\ensuremath{\text{V}}}
\begin{filecontents}[overwrite]{oct2tex.alucyl_d50_v800_S.dtab.v}
	idx ; c1 ; c2 ; c3 ; c4 ; c5 ; c6 ; c7
	1 ; 1001.5000000000000000 ; 0.0500000007450581 ; -0.0000771259801695 ; -0.0000266912029474 ; -0.0000000000017849 ; 0.0000256154962699 ; 0.0000878518185345
	2 ; 1003.5000000000000000 ; 0.2500000000000000 ; -0.0001224874140462 ; -0.0000300417596009 ; 0.0000000000008185 ; 0.0000344734871760 ; 0.0001012811917462
	3 ; 1005.5000000000000000 ; 0.4499999880790710 ; -0.0001014073786791 ; -0.0000320222497976 ; 0.0000000000007276 ; 0.0000358570978278 ; 0.0000995991504169
	4 ; 1007.5000000000000000 ; 0.6499999761581421 ; -0.0000799746558187 ; -0.0000279392061202 ; -0.0000000000007276 ; 0.0000269584415946 ; 0.0001204621439683
	5 ; 1009.5000000000000000 ; 0.8500000238418579 ; -0.0001162203625427 ; -0.0000260536653514 ; 0.0000000000021828 ; 0.0000290474345093 ; 0.0001174507051473
	6 ; 1011.5000000000000000 ; 1.0499999523162842 ; -0.0000878559367266 ; -0.0000255517697951 ; -0.0000000000001819 ; 0.0000311364638037 ; 0.0000918941805139
	7 ; 1013.5000000000000000 ; 1.2500000000000000 ; -0.0003634836175479 ; -0.0000923052139115 ; 0.0000000000331056 ; 0.0001038179179886 ; 0.0002817231579684
	8 ; 1015.5000000000000000 ; 1.4500000476837158 ; -0.0003354176005814 ; -0.0001412343117408 ; -0.0000000000407454 ; 0.0001225782616530 ; 0.0004843981587328
	9 ; 1017.5000000000000000 ; 1.6499999761581421 ; -0.0002273587160744 ; -0.0000527089141542 ; -0.0000000001149601 ; 0.0000580900523346 ; 0.0002377724886173
	10 ; 1019.5000000000000000 ; 1.8499999046325684 ; -0.0004130775341764 ; -0.0000746437581256 ; -0.0000000001688022 ; 0.0000867936760187 ; 0.0003144961083308
	11 ; 1021.5000000000000000 ; 2.0500001907348633 ; -0.0020161913707852 ; -0.0006569352699444 ; 0.0000000005151378 ; 0.0006770084146410 ; 0.0020861430093646
	12 ; 1023.5000000000000000 ; 2.2500000000000000 ; -0.0018958027940243 ; -0.0006409566849470 ; -0.0000000004773028 ; 0.0004820107133128 ; 0.0023642256855965
	13 ; 1025.5000000000000000 ; 2.4500000476837158 ; -0.0009071019594558 ; -0.0003307782462798 ; 0.0000000000902219 ; 0.0003494127304293 ; 0.0009657394257374
	14 ; 1027.5000000000000000 ; 2.6500000953674316 ; -0.0003752309421543 ; -0.0001382499322062 ; 0.0000000000241926 ; 0.0001090268051485 ; 0.0002619724546093
	15 ; 1029.5000000000000000 ; 2.8499999046325684 ; -0.0002221496833954 ; -0.0000841526853037 ; -0.0000000000269210 ; 0.0000838365667732 ; 0.0002248857053928
	16 ; 1031.5000000000000000 ; 3.0499999523162842 ; -0.0001953450992005 ; -0.0000591930074734 ; 0.0000000000007276 ; 0.0000516874933965 ; 0.0002446498838253
	17 ; 1033.5000000000000000 ; 3.2500000000000000 ; -0.0001529002038296 ; -0.0000482595823996 ; -0.0000000000009095 ; 0.0000427481063525 ; 0.0001345698256046
	18 ; 1035.5000000000000000 ; 3.4499998092651367 ; -0.0001862023782451 ; -0.0000559916661587 ; -0.0000000000072760 ; 0.0000650490255794 ; 0.0001750613155309
	19 ; 1037.5000000000000000 ; 3.6500000953674316 ; -0.0001288764906349 ; -0.0000370412890334 ; 0.0000000000120053 ; 0.0000417850606027 ; 0.0000862511224113
	20 ; 1039.5000000000000000 ; 3.8499999046325684 ; -0.0001273979287362 ; -0.0000269625343208 ; -0.0000000000005002 ; 0.0000300512656395 ; 0.0000947157750488
	21 ; 1041.5000000000000000 ; 4.0500001907348633 ; -0.0001818072923925 ; -0.0000520985195180 ; -0.0000000000218279 ; 0.0000566251255805 ; 0.0001667730975896
	22 ; 1043.5000000000000000 ; 4.2500000000000000 ; -0.0001660854322836 ; -0.0000327683301293 ; -0.0000000000220098 ; 0.0000416086331825 ; 0.0001191192714032
	23 ; 1045.5000000000000000 ; 4.4499998092651367 ; -0.0009629353880882 ; -0.0002775490283966 ; 0.0000000001658918 ; 0.0002733536530286 ; 0.0007161160465330
	24 ; 1047.5000000000000000 ; 4.6499996185302734 ; -0.0009925614576787 ; -0.0003518448211253 ; 0.0000000000494765 ; 0.0003421417495701 ; 0.0013442037161440
	25 ; 1049.5000000000000000 ; 4.8500003814697266 ; -0.0006200118223205 ; -0.0001992247416638 ; 0.0000000000167347 ; 0.0002044839202426 ; 0.0004232741484884
	26 ; 1051.5000000000000000 ; 5.0500001907348633 ; -0.0001604558638064 ; -0.0000496025240864 ; 0.0000000000483851 ; 0.0000478078727610 ; 0.0001343392068520
	27 ; 1053.5000000000000000 ; 5.2500000000000000 ; -0.0001463754306315 ; -0.0000664367325953 ; 0.0000000000066393 ; 0.0000728217710275 ; 0.0002197988796979
	28 ; 1055.5000000000000000 ; 5.4499998092651367 ; -0.0000806393363746 ; -0.0000304351306113 ; 0.0000000000129148 ; 0.0000383123588108 ; 0.0001325214689132
	29 ; 1057.5000000000000000 ; 5.6500000953674316 ; -0.0000706282953615 ; -0.0000297162478091 ; -0.0000000000080945 ; 0.0000286269532808 ; 0.0000780986010795
	30 ; 1059.5000000000000000 ; 5.8500003814697266 ; -0.0000863637687871 ; -0.0000274915673799 ; 0.0000000000123691 ; 0.0000310822288156 ; 0.0000839044296299
	31 ; 1061.5000000000000000 ; 6.0500001907348633 ; -0.0000947469234234 ; -0.0000313168784487 ; 0.0000000000045475 ; 0.0000329948488798 ; 0.0001066122640623
	32 ; 1063.5000000000000000 ; 6.2500000000000000 ; -0.0000874083198141 ; -0.0000393609370803 ; 0.0000000000002842 ; 0.0000342021630786 ; 0.0001008064136840
	33 ; 1065.5000000000000000 ; 6.4499998092651367 ; -0.0001008512626868 ; -0.0000301503096125 ; 0.0000000000029104 ; 0.0000393026421079 ; 0.0001388562814100
	34 ; 1067.5000000000000000 ; 6.6500000953674316 ; -0.0001391859696014 ; -0.0000303673550661 ; -0.0000000000010914 ; 0.0000362098362530 ; 0.0001020001363941
	35 ; 1069.5000000000000000 ; 6.8499994277954102 ; -0.0001024519297061 ; -0.0000247649768426 ; 0.0000000000008185 ; 0.0000278944244201 ; 0.0000788039760664
	36 ; 1071.5000000000000000 ; 7.0500001907348633 ; -0.0001141720931628 ; -0.0000378009644919 ; 0.0000000000004547 ; 0.0000260767083091 ; 0.0001100035078707
	37 ; 1073.5000000000000000 ; 7.2500000000000000 ; -0.0000828097472549 ; -0.0000323478561768 ; 0.0000000000025466 ; 0.0000357893004548 ; 0.0001062053415808
	38 ; 1075.5000000000000000 ; 7.4499998092651367 ; -0.0000901755702216 ; -0.0000372041213268 ; -0.0000000000058208 ; 0.0000242318783421 ; 0.0001009285260807
	39 ; 1077.5000000000000000 ; 7.6500000953674316 ; -0.0000958457167144 ; -0.0000306793299387 ; -0.0000000000025466 ; 0.0000308787202812 ; 0.0001337287831120
	40 ; 1079.5000000000000000 ; 7.8500003814697266 ; -0.0000754031862016 ; -0.0000285496389552 ; 0.0000000000026830 ; 0.0000354230141966 ; 0.0000912024115678
	41 ; 1081.5000000000000000 ; 8.0499992370605469 ; -0.0001233556249645 ; -0.0000385470702895 ; 0.0000000000003638 ; 0.0000430737345596 ; 0.0000868615825311
	42 ; 1083.5000000000000000 ; 8.2500000000000000 ; -0.0000834472957649 ; -0.0000277086110145 ; -0.0000000000014552 ; 0.0000193620380742 ; 0.0001019323099172
	43 ; 1085.5000000000000000 ; 8.4500007629394531 ; -0.0000804087321740 ; -0.0000328226342390 ; -0.0000000000010914 ; 0.0000279351170320 ; 0.0000863190143718
	44 ; 1087.5000000000000000 ; 8.6499996185302734 ; -0.0001147689181380 ; -0.0000344504369423 ; 0.0000000000006139 ; 0.0000318418824463 ; 0.0000783834184404
	45 ; 1089.5000000000000000 ; 8.8499994277954102 ; -0.0000810598066892 ; -0.0000305572575598 ; 0.0000000000001705 ; 0.0000297256956401 ; 0.0000984597427305
	46 ; 1091.5000000000000000 ; 9.0500001907348633 ; -0.0000932955081225 ; -0.0000383706646971 ; -0.0000000000013642 ; 0.0000350160844391 ; 0.0001397787418682
	47 ; 1093.5000000000000000 ; 9.2500000000000000 ; -0.0000777634995757 ; -0.0000220926522161 ; 0.0000000000004661 ; 0.0000241233465204 ; 0.0000831989964354
	48 ; 1095.5000000000000000 ; 9.4499998092651367 ; -0.0001184314169222 ; -0.0000506470678374 ; 0.0000000000046384 ; 0.0000297664300888 ; 0.0001272853696719
	49 ; 1097.5000000000000000 ; 9.6499996185302734 ; -0.0002831922611222 ; -0.0000744942808524 ; 0.0000000000640284 ; 0.0001037637121044 ; 0.0001800804166123
	50 ; 1099.5000000000000000 ; 9.8500003814697266 ; -0.0007550525479019 ; -0.0002065098378807 ; -0.0000000007974449 ; 0.0002771781291813 ; 0.0005393219180405
	51 ; 1101.5000000000000000 ; 10.0499992370605469 ; -0.0016041537746787 ; -0.0004448187537491 ; 0.0000000007450581 ; 0.0005247681401670 ; 0.0011748587712646
	52 ; 1103.5000000000000000 ; 10.2500000000000000 ; -0.0030600167810917 ; -0.0007259370759130 ; 0.0000000039581209 ; 0.0010344767943025 ; 0.0021607000380754
	53 ; 1105.5000000000000000 ; 10.4499998092651367 ; -0.0042106807231903 ; -0.0009492952376604 ; -0.0000000059604646 ; 0.0015019457787275 ; 0.0031587369740009
	54 ; 1107.5000000000000000 ; 10.6499996185302734 ; -0.0048839747905731 ; -0.0013624764978886 ; 0.0000000037252903 ; 0.0019109919667244 ; 0.0037795454263687
	55 ; 1109.5000000000000000 ; 10.8500003814697266 ; -0.0049334317445755 ; -0.0016927309334278 ; -0.0000000096857544 ; 0.0019469968974590 ; 0.0038521736860275
	56 ; 1111.5000000000000000 ; 11.0500001907348633 ; -0.0037803947925568 ; -0.0015955008566380 ; 0.0000000029802323 ; 0.0018463283777237 ; 0.0033232048153877
	57 ; 1113.5000000000000000 ; 11.2500000000000000 ; -0.0034623518586159 ; -0.0013045407831669 ; -0.0000000094994901 ; 0.0016197115182877 ; 0.0034055113792419
	58 ; 1115.5000000000000000 ; 11.4500007629394531 ; -0.0040660575032234 ; -0.0016298480331898 ; -0.0000000024214386 ; 0.0014542452991009 ; 0.0048439130187035
	59 ; 1117.5000000000000000 ; 11.6499996185302734 ; -0.0044728852808475 ; -0.0020900778472424 ; 0.0000000016763806 ; 0.0014399066567421 ; 0.0061726756393909
	60 ; 1119.5000000000000000 ; 11.8500003814697266 ; -0.0051674675196409 ; -0.0023341672495008 ; 0.0000000016763806 ; 0.0016611516475677 ; 0.0073630064725876
	61 ; 1121.5000000000000000 ; 12.0500001907348633 ; -0.0056289508938789 ; -0.0026385188102722 ; -0.0000000027939677 ; 0.0017707012593746 ; 0.0074820369482040
	62 ; 1123.5000000000000000 ; 12.2500000000000000 ; -0.0057150050997734 ; -0.0028615295886993 ; 0.0000000134110447 ; 0.0025180466473103 ; 0.0073526427149773
	63 ; 1125.5000000000000000 ; 12.4499998092651367 ; -0.0053573176264763 ; -0.0027375295758247 ; -0.0000000078231093 ; 0.0023676529526711 ; 0.0065383091568947
	64 ; 1127.5000000000000000 ; 12.6500005722045898 ; -0.0049226880073547 ; -0.0028332546353340 ; 0.0000000096857544 ; 0.0023903474211693 ; 0.0058698356151581
	65 ; 1129.5000000000000000 ; 12.8500003814697266 ; -0.0044270753860474 ; -0.0027843415737152 ; 0.0000000245869156 ; 0.0025301277637482 ; 0.0054315775632858
	66 ; 1131.5000000000000000 ; 13.0499992370605469 ; -0.0045990645885468 ; -0.0027460157871246 ; 0.0000000149011612 ; 0.0022662132978439 ; 0.0047765821218491
	67 ; 1133.5000000000000000 ; 13.2500000000000000 ; -0.0052861049771309 ; -0.0016464143991470 ; 0.0000000048428772 ; 0.0019356459379196 ; 0.0052398890256882
	68 ; 1135.5000000000000000 ; 13.4500007629394531 ; -0.0071949139237404 ; -0.0018384456634521 ; 0.0000000065192580 ; 0.0026529841125011 ; 0.0054972022771835
	69 ; 1137.5000000000000000 ; 13.6499996185302734 ; -0.0118281804025173 ; -0.0030047975014895 ; 0.0000000017695129 ; 0.0037016149144620 ; 0.0079939272254705
	70 ; 1139.5000000000000000 ; 13.8500003814697266 ; -0.0164081975817680 ; -0.0041411183774471 ; 0.0000000072643163 ; 0.0049979761242867 ; 0.0117157027125359
	71 ; 1141.5000000000000000 ; 14.0500001907348633 ; -0.0195702016353607 ; -0.0045802295207977 ; -0.0000000098720196 ; 0.0069781467318535 ; 0.0144626200199127
	72 ; 1143.5000000000000000 ; 14.2500000000000000 ; -0.0207684636116028 ; -0.0068098753690720 ; 0.0000000350177274 ; 0.0081133246421814 ; 0.0160723030567169
	73 ; 1145.5000000000000000 ; 14.4499998092651367 ; -0.0205731689929962 ; -0.0069808065891266 ; 0.0000000350177274 ; 0.0082132369279861 ; 0.0163897275924683
	74 ; 1147.5000000000000000 ; 14.6499996185302734 ; -0.0186026692390442 ; -0.0072889178991318 ; 0.0000000342726700 ; 0.0087196677923203 ; 0.0156987607479095
	75 ; 1149.5000000000000000 ; 14.8500003814697266 ; -0.0170223414897919 ; -0.0069857984781265 ; -0.0000000387430177 ; 0.0087734013795853 ; 0.0138878524303436
	76 ; 1151.5000000000000000 ; 15.0500001907348633 ; -0.0141723155975342 ; -0.0068918764591217 ; -0.0000001139938846 ; 0.0076517760753632 ; 0.0125013589859009
	77 ; 1153.5000000000000000 ; 15.2500000000000000 ; -0.0140367448329926 ; -0.0052667558193207 ; -0.0000000193715088 ; 0.0061661452054977 ; 0.0138786137104034
	78 ; 1155.5000000000000000 ; 15.4500007629394531 ; -0.0141435861587524 ; -0.0044936984777451 ; -0.0000000417232506 ; 0.0044694840908051 ; 0.0141136050224304
	79 ; 1157.5000000000000000 ; 15.6499996185302734 ; -0.0133317112922668 ; -0.0061866268515587 ; -0.0000000052154063 ; 0.0048801153898239 ; 0.0151558369398117
	80 ; 1159.5000000000000000 ; 15.8500003814697266 ; -0.0135920494794846 ; -0.0060837343335152 ; -0.0000000093132257 ; 0.0049149580299854 ; 0.0199078619480133
	81 ; 1161.5000000000000000 ; 16.0499992370605469 ; -0.0170732215046883 ; -0.0067827501334250 ; -0.0000000054948033 ; 0.0063908752053976 ; 0.0234391801059246
	82 ; 1163.5000000000000000 ; 16.2500000000000000 ; -0.0190778523683548 ; -0.0092899948358536 ; 0.0000000074505806 ; 0.0064037740230560 ; 0.0248041003942490
	83 ; 1165.5000000000000000 ; 16.4500007629394531 ; -0.0193769633769989 ; -0.0100072175264359 ; 0.0000000175088637 ; 0.0079972445964813 ; 0.0244805961847305
	84 ; 1167.5000000000000000 ; 16.6500015258789062 ; -0.0187231898307800 ; -0.0096995085477829 ; -0.0000000692904010 ; 0.0081237256526947 ; 0.0223996341228485
	85 ; 1169.5000000000000000 ; 16.8500003814697266 ; -0.0166597068309784 ; -0.0095210373401642 ; -0.0000000096857544 ; 0.0076747983694077 ; 0.0208222270011902
	86 ; 1171.5000000000000000 ; 17.0499992370605469 ; -0.0144430398941040 ; -0.0086527019739151 ; -0.0000000715255766 ; 0.0075251758098602 ; 0.0178304612636566
	87 ; 1173.5000000000000000 ; 17.2500000000000000 ; -0.0144738256931305 ; -0.0071495771408081 ; 0.0000000536441789 ; 0.0056922435760498 ; 0.0142095386981964
	88 ; 1175.5000000000000000 ; 17.4500007629394531 ; -0.0148486793041229 ; -0.0045388638973236 ; -0.0000000245869156 ; 0.0058586597442627 ; 0.0142497420310974
	89 ; 1177.5000000000000000 ; 17.6499996185302734 ; -0.0160997807979584 ; -0.0054839253425598 ; 0.0000000305473797 ; 0.0065084397792816 ; 0.0134177505970001
	90 ; 1179.5000000000000000 ; 17.8499984741210938 ; -0.0227731317281723 ; -0.0055569447577000 ; 0.0000000212341540 ; 0.0070284269750118 ; 0.0148490034043789
	91 ; 1181.5000000000000000 ; 18.0499992370605469 ; -0.0278549231588840 ; -0.0073131918907166 ; -0.0000000078231093 ; 0.0081160180270672 ; 0.0194851905107498
	92 ; 1183.5000000000000000 ; 18.2500000000000000 ; -0.0301440507173538 ; -0.0070109814405441 ; -0.0000000294297937 ; 0.0106272399425507 ; 0.0222015529870987
	93 ; 1185.5000000000000000 ; 18.4500007629394531 ; -0.0300823152065277 ; -0.0093711763620377 ; 0.0000000521540642 ; 0.0115464031696320 ; 0.0227162241935730
	94 ; 1187.5000000000000000 ; 18.6500015258789062 ; -0.0274367630481720 ; -0.0094069242477417 ; -0.0000000737607451 ; 0.0110281109809875 ; 0.0219543874263763
	95 ; 1189.5000000000000000 ; 18.8499984741210938 ; -0.0221877694129944 ; -0.0093310475349426 ; 0.0000000312924371 ; 0.0110668540000916 ; 0.0188555121421814
	96 ; 1191.5000000000000000 ; 19.0499992370605469 ; -0.0189757347106934 ; -0.0093682706356049 ; 0.0000000223517418 ; 0.0102730691432953 ; 0.0167200565338135
	97 ; 1193.5000000000000000 ; 19.2500000000000000 ; -0.0186326503753662 ; -0.0076162964105606 ; 0.0000000432133689 ; 0.0087086260318756 ; 0.0187809467315674
	98 ; 1195.5000000000000000 ; 19.4500007629394531 ; -0.0188316702842712 ; -0.0069996416568756 ; -0.0000000171363350 ; 0.0061096400022507 ; 0.0193022191524506
	99 ; 1197.5000000000000000 ; 19.6500015258789062 ; -0.0178164839744568 ; -0.0073196515440941 ; 0.0000000260770321 ; 0.0071161836385727 ; 0.0186936557292938
	100 ; 1199.5000000000000000 ; 19.8499984741210938 ; -0.0158133730292320 ; -0.0079056024551392 ; -0.0000000219792131 ; 0.0052495822310448 ; 0.0216909348964691
	101 ; 1201.5000000000000000 ; 20.0499992370605469 ; -0.0162680596113205 ; -0.0071717873215675 ; 0.0000000063329937 ; 0.0060528181493282 ; 0.0243664272129536
	102 ; 1203.5000000000000000 ; 20.2500000000000000 ; -0.0174681693315506 ; -0.0075254589319229 ; -0.0000000089406971 ; 0.0068962574005127 ; 0.0245629698038101
	103 ; 1205.5000000000000000 ; 20.4500007629394531 ; -0.0173760354518890 ; -0.0090610235929489 ; -0.0000000596046448 ; 0.0066957920789719 ; 0.0233317017555237
	104 ; 1207.5000000000000000 ; 20.6499996185302734 ; -0.0162698924541473 ; -0.0087544918060303 ; 0.0000000059604646 ; 0.0072197914123535 ; 0.0200427770614624
	105 ; 1209.5000000000000000 ; 20.8500003814697266 ; -0.0145546793937683 ; -0.0081617385149002 ; -0.0000000074505806 ; 0.0069947838783264 ; 0.0169374644756317
	106 ; 1211.5000000000000000 ; 21.0499992370605469 ; -0.0145203471183777 ; -0.0071270316839218 ; -0.0000000596046448 ; 0.0073792338371277 ; 0.0147734582424164
	107 ; 1213.5000000000000000 ; 21.2500000000000000 ; -0.0166482031345367 ; -0.0056539475917816 ; -0.0000000752508669 ; 0.0070746392011642 ; 0.0152093470096588
	108 ; 1215.5000000000000000 ; 21.4500007629394531 ; -0.0180729031562805 ; -0.0051780939102173 ; 0.0000000201165680 ; 0.0059067308902740 ; 0.0160310268402100
	109 ; 1217.5000000000000000 ; 21.6499996185302734 ; -0.0203369110822678 ; -0.0062054321169853 ; 0.0000000085681675 ; 0.0080875828862190 ; 0.0162889286875725
	110 ; 1219.5000000000000000 ; 21.8500003814697266 ; -0.0269997008144855 ; -0.0060444101691246 ; 0.0000000107102096 ; 0.0078050605952740 ; 0.0179523453116417
	111 ; 1221.5000000000000000 ; 22.0499992370605469 ; -0.0311939418315887 ; -0.0071610957384109 ; 0.0000000067055224 ; 0.0094202011823654 ; 0.0203458964824677
	112 ; 1223.5000000000000000 ; 22.2500000000000000 ; -0.0323196053504944 ; -0.0077360868453979 ; -0.0000000424683080 ; 0.0109219998121262 ; 0.0225653648376465
	113 ; 1225.5000000000000000 ; 22.4500007629394531 ; -0.0316139161586761 ; -0.0099864900112152 ; 0.0000000402331359 ; 0.0114674568176270 ; 0.0228559970855713
	114 ; 1227.5000000000000000 ; 22.6499996185302734 ; -0.0276370048522949 ; -0.0101538002490997 ; -0.0000000581145301 ; 0.0109894573688507 ; 0.0217541456222534
	115 ; 1229.5000000000000000 ; 22.8500003814697266 ; -0.0214795470237732 ; -0.0102894902229309 ; 0.0000001102685943 ; 0.0120954215526581 ; 0.0190222263336182
	116 ; 1231.5000000000000000 ; 23.0499992370605469 ; -0.0212826132774353 ; -0.0107039213180542 ; -0.0000000894069672 ; 0.0117466151714325 ; 0.0197935104370117
	117 ; 1233.5000000000000000 ; 23.2500000000000000 ; -0.0244379043579102 ; -0.0094293653964996 ; -0.0000000879168525 ; 0.0115776658058167 ; 0.0235971212387085
	118 ; 1235.5000000000000000 ; 23.4500007629394531 ; -0.0255597233772278 ; -0.0099663436412811 ; 0.0000000461935983 ; 0.0093868374824524 ; 0.0252099633216858
	119 ; 1237.5000000000000000 ; 23.6500015258789062 ; -0.0253454744815826 ; -0.0081050843000412 ; 0.0000000290572650 ; 0.0085690766572952 ; 0.0253265500068665
	120 ; 1239.5000000000000000 ; 23.8499984741210938 ; -0.0237003862857819 ; -0.0074962228536606 ; 0.0000000186264515 ; 0.0067888498306274 ; 0.0240904390811920
	121 ; 1241.5000000000000000 ; 24.0499992370605469 ; -0.0204749256372452 ; -0.0065789856016636 ; -0.0000000068917871 ; 0.0076184049248695 ; 0.0213093161582947
	122 ; 1243.5000000000000000 ; 24.2500000000000000 ; -0.0160072129219770 ; -0.0069342460483313 ; -0.0000000019557773 ; 0.0060869287699461 ; 0.0170357208698988
	123 ; 1245.5000000000000000 ; 24.4500007629394531 ; -0.0115965530276299 ; -0.0057107508182526 ; 0.0000000283122059 ; 0.0030833445489407 ; 0.0147735849022865
	124 ; 1247.5000000000000000 ; 24.6500015258789062 ; -0.0078906714916229 ; -0.0034511238336563 ; -0.0000000163912777 ; 0.0028889924287796 ; 0.0123507827520370
	125 ; 1249.5000000000000000 ; 24.8499984741210938 ; -0.0060257315635681 ; -0.0030462443828583 ; 0.0000000558793545 ; 0.0025459080934525 ; 0.0090441107749939
	126 ; 1251.5000000000000000 ; 25.0499992370605469 ; -0.0060201287269592 ; -0.0034200102090836 ; 0.0000000156462185 ; 0.0032087266445160 ; 0.0055530369281769
	127 ; 1253.5000000000000000 ; 25.2500000000000000 ; -0.0077878534793854 ; -0.0033288002014160 ; -0.0000000223517418 ; 0.0035880655050278 ; 0.0080521106719971
	128 ; 1255.5000000000000000 ; 25.4500007629394531 ; -0.0093780606985092 ; -0.0036618486046791 ; 0.0000000510364764 ; 0.0039367154240608 ; 0.0092698931694031
	129 ; 1257.5000000000000000 ; 25.6499996185302734 ; -0.0097351074218750 ; -0.0041440650820732 ; 0.0000000100582840 ; 0.0042602643370628 ; 0.0095232576131821
	130 ; 1259.5000000000000000 ; 25.8500003814697266 ; -0.0094396620988846 ; -0.0041995868086815 ; -0.0000000316649675 ; 0.0043776482343674 ; 0.0091350376605988
	131 ; 1261.5000000000000000 ; 26.0499992370605469 ; -0.0086092799901962 ; -0.0042725950479507 ; 0.0000000040978194 ; 0.0040347650647163 ; 0.0082945674657822
	132 ; 1263.5000000000000000 ; 26.2500000000000000 ; -0.0093425363302231 ; -0.0055242478847504 ; 0.0000000100582840 ; 0.0048573017120361 ; 0.0102115273475647
	133 ; 1265.5000000000000000 ; 26.4500007629394531 ; -0.0111030042171478 ; -0.0058902725577354 ; -0.0000000055879354 ; 0.0052809491753578 ; 0.0127972960472107
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	135 ; 1269.5000000000000000 ; 26.8500003814697266 ; -0.0125131011009216 ; -0.0064180195331573 ; 0.0000000275671486 ; 0.0055676400661469 ; 0.0144149214029312
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	137 ; 1273.5000000000000000 ; 27.2500000000000000 ; -0.0102462768554688 ; -0.0064792484045029 ; 0.0000000149011612 ; 0.0054858177900314 ; 0.0108686387538910
	138 ; 1275.5000000000000000 ; 27.4500007629394531 ; -0.0099665224552155 ; -0.0052768737077713 ; 0.0000000670552254 ; 0.0050266236066818 ; 0.0093224346637726
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	143 ; 1285.5000000000000000 ; 28.4500007629394531 ; -0.0160907804965973 ; -0.0039570443332195 ; 0.0000000128522517 ; 0.0050509832799435 ; 0.0105778723955154
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	158 ; 1315.5000000000000000 ; 31.4500007629394531 ; -0.0126998722553253 ; -0.0027163475751877 ; -0.0000000782310963 ; 0.0039726048707962 ; 0.0086849033832550
	159 ; 1317.5000000000000000 ; 31.6500015258789062 ; -0.0051854848861694 ; -0.0011768192052841 ; -0.0000000745058060 ; 0.0017476677894592 ; 0.0032201409339905
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	163 ; 1325.5000000000000000 ; 32.4499969482421875 ; -0.0205239579081535 ; -0.0089086778461933 ; -0.0000000011175871 ; 0.0063973367214203 ; 0.0283146537840366
	164 ; 1327.5000000000000000 ; 32.6500015258789062 ; -0.0209323316812515 ; -0.0093878544867039 ; 0.0000000067055224 ; 0.0066140480339527 ; 0.0288829654455185
	165 ; 1329.5000000000000000 ; 32.8499984741210938 ; -0.0199672579765320 ; -0.0092554017901421 ; 0.0000000096857544 ; 0.0065145418047905 ; 0.0278702676296234
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	168 ; 1335.5000000000000000 ; 33.4500007629394531 ; -0.0062284171581268 ; -0.0031966716051102 ; 0.0000000476837165 ; 0.0022552758455276 ; 0.0090611875057220
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	173 ; 1345.5000000000000000 ; 34.4500007629394531 ; -0.0143968760967255 ; -0.0044145733118057 ; 0.0000000339001431 ; 0.0039931535720825 ; 0.0101865530014038
	174 ; 1347.5000000000000000 ; 34.6500015258789062 ; -0.0129666924476624 ; -0.0039706826210022 ; -0.0000000279396772 ; 0.0039138123393059 ; 0.0092037916183472
	175 ; 1349.5000000000000000 ; 34.8499984741210938 ; -0.0111225843429565 ; -0.0026803612709045 ; 0.0000000126659874 ; 0.0033650547266006 ; 0.0068481713533401
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	177 ; 1353.5000000000000000 ; 35.2500000000000000 ; -0.0055341348052025 ; -0.0003744214773178 ; 0.0000000089406971 ; 0.0008654892444611 ; 0.0016686990857124
	178 ; 1355.5000000000000000 ; 35.4500007629394531 ; -0.0028708428144455 ; -0.0010407008230686 ; 0.0000000171363350 ; 0.0007614009082317 ; 0.0019088014960289
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	180 ; 1359.5000000000000000 ; 35.8499984741210938 ; -0.0053776577115059 ; -0.0017666108906269 ; 0.0000000122003261 ; 0.0016652159392834 ; 0.0050750859081745
	181 ; 1361.5000000000000000 ; 36.0499992370605469 ; -0.0080983396619558 ; -0.0018005333840847 ; 0.0000000044703485 ; 0.0028126598335803 ; 0.0063832178711891
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	188 ; 1375.5000000000000000 ; 37.4500007629394531 ; -0.0098753571510315 ; -0.0042982399463654 ; -0.0000000491738312 ; 0.0047658979892731 ; 0.0080422163009644
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	193 ; 1385.5000000000000000 ; 38.4500007629394531 ; -0.0137382596731186 ; -0.0055992603302002 ; -0.0000000119209291 ; 0.0053647905588150 ; 0.0142259299755096
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	195 ; 1389.5000000000000000 ; 38.8499984741210938 ; -0.0104791913181543 ; -0.0052010007202625 ; 0.0000000020489097 ; 0.0033986135385931 ; 0.0125388083979487
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	198 ; 1395.5000000000000000 ; 39.4500007629394531 ; -0.0027725547552109 ; -0.0013043284416199 ; 0.0000000506639495 ; 0.0010207295417786 ; 0.0042278617620468
	199 ; 1397.5000000000000000 ; 39.6500015258789062 ; -0.0022421032190323 ; -0.0005443394184113 ; 0.0000000178813941 ; 0.0007729753851891 ; 0.0018401592969894
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	203 ; 1405.5000000000000000 ; 40.4499969482421875 ; -0.0089201182126999 ; -0.0025384388864040 ; -0.0000000065192580 ; 0.0025808662176132 ; 0.0059745498001575
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	228 ; 1455.5000000000000000 ; 45.4500007629394531 ; -0.0046438053250313 ; -0.0020403508096933 ; -0.0000000003259629 ; 0.0017279442399740 ; 0.0076132789254189
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	231 ; 1461.5000000000000000 ; 46.0500030517578125 ; -0.0016408376395702 ; -0.0005951374769211 ; 0.0000000094994901 ; 0.0005587432533503 ; 0.0019961483776569
	232 ; 1463.5000000000000000 ; 46.2500000000000000 ; -0.0019612014293671 ; -0.0006632693111897 ; 0.0000000057741998 ; 0.0008984170854092 ; 0.0015834011137486
	233 ; 1465.5000000000000000 ; 46.4500007629394531 ; -0.0028183534741402 ; -0.0011702701449394 ; -0.0000000093132257 ; 0.0013092122972012 ; 0.0020660832524300
	234 ; 1467.5000000000000000 ; 46.6500015258789062 ; -0.0038969852030277 ; -0.0013711079955101 ; 0.0000000104308127 ; 0.0017547085881233 ; 0.0028663501143456
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	236 ; 1471.5000000000000000 ; 47.0499992370605469 ; -0.0058930777013302 ; -0.0016262643039227 ; 0.0000000010244549 ; 0.0021332670003176 ; 0.0037514641880989
	237 ; 1473.5000000000000000 ; 47.2500000000000000 ; -0.0066634379327297 ; -0.0016592312604189 ; -0.0000000052154063 ; 0.0022195111960173 ; 0.0037477985024452
	238 ; 1475.5000000000000000 ; 47.4500007629394531 ; -0.0069283582270145 ; -0.0017532324418426 ; -0.0000000014435499 ; 0.0022854926064610 ; 0.0035420078784227
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	243 ; 1485.5000000000000000 ; 48.4500007629394531 ; -0.0068081044591963 ; -0.0009786302689463 ; 0.0000000029103830 ; 0.0013783604372293 ; 0.0029096889775246
	244 ; 1487.5000000000000000 ; 48.6500015258789062 ; -0.0067348531447351 ; -0.0010483395308256 ; 0.0000000012572855 ; 0.0014729897957295 ; 0.0033388193696737
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	250 ; 1499.5000000000000000 ; 49.8499984741210938 ; -0.0042613968253136 ; -0.0010848194360733 ; 0.0000000100582840 ; 0.0015289559960365 ; 0.0026240199804306
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	393 ; 1785.5000000000000000 ; 78.4499969482421875 ; -0.0122240036725998 ; -0.0061442255973816 ; -0.0000000065192580 ; 0.0055651590228081 ; 0.0154450386762619
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	399 ; 1797.5000000000000000 ; 79.6500015258789062 ; -0.0042551010847092 ; -0.0013870671391487 ; -0.0000000312924371 ; 0.0013260543346405 ; 0.0051623284816742
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	403 ; 1805.5000000000000000 ; 80.4499969482421875 ; -0.0126663614064455 ; -0.0042072795331478 ; 0.0000000023748725 ; 0.0045354189351201 ; 0.0099924653768539
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	408 ; 1815.5000000000000000 ; 81.4499969482421875 ; -0.0101037770509720 ; -0.0035735070705414 ; 0.0000000145286325 ; 0.0032103061676025 ; 0.0060661286115646
	409 ; 1817.5000000000000000 ; 81.6500015258789062 ; -0.0074966698884964 ; -0.0024421364068985 ; 0.0000000204890966 ; 0.0022020563483238 ; 0.0064430236816406
	410 ; 1819.5000000000000000 ; 81.8499984741210938 ; -0.0054254680871964 ; -0.0024495720863342 ; -0.0000000160187490 ; 0.0021617189049721 ; 0.0065211355686188
	411 ; 1821.5000000000000000 ; 82.0500030517578125 ; -0.0054483413696289 ; -0.0028398558497429 ; 0.0000000059604646 ; 0.0018533766269684 ; 0.0088597759604454
	412 ; 1823.5000000000000000 ; 82.2500000000000000 ; -0.0073778228834271 ; -0.0036322083324194 ; -0.0000000025145710 ; 0.0026998366229236 ; 0.0117940856143832
	413 ; 1825.5000000000000000 ; 82.4499969482421875 ; -0.0091590434312820 ; -0.0042842775583267 ; -0.0000000042840838 ; 0.0032690083608031 ; 0.0136265866458416
	414 ; 1827.5000000000000000 ; 82.6500015258789062 ; -0.0102346241474152 ; -0.0049489513039589 ; -0.0000000076368449 ; 0.0031521618366241 ; 0.0143334567546844
	415 ; 1829.5000000000000000 ; 82.8499984741210938 ; -0.0104506909847260 ; -0.0051782652735710 ; 0.0000000312924371 ; 0.0047082379460335 ; 0.0143859684467316
	416 ; 1831.5000000000000000 ; 83.0500030517578125 ; -0.0103054195642471 ; -0.0051868185400963 ; 0.0000000245869156 ; 0.0046831071376801 ; 0.0136522352695465
	417 ; 1833.5000000000000000 ; 83.2500000000000000 ; -0.0095118880271912 ; -0.0047628432512283 ; 0.0000000305473797 ; 0.0050526708364487 ; 0.0121749937534332
	418 ; 1835.5000000000000000 ; 83.4499969482421875 ; -0.0084994137287140 ; -0.0045955926179886 ; -0.0000000484287739 ; 0.0047931671142578 ; 0.0097689330577850
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	428 ; 1855.5000000000000000 ; 85.4499969482421875 ; -0.0075766146183014 ; -0.0020677633583546 ; -0.0000000290572650 ; 0.0024945735931396 ; 0.0055595561861992
	429 ; 1857.5000000000000000 ; 85.6499938964843750 ; -0.0055512487888336 ; -0.0014386475086212 ; 0.0000000149011612 ; 0.0017448142170906 ; 0.0036537796258926
	430 ; 1859.5000000000000000 ; 85.8499984741210938 ; -0.0032139122486115 ; -0.0006595253944397 ; -0.0000000052154063 ; 0.0006896257400513 ; 0.0017189085483551
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	432 ; 1863.5000000000000000 ; 86.2500000000000000 ; -0.0044551193714142 ; -0.0022037997841835 ; 0.0000000173226002 ; 0.0017291754484177 ; 0.0068056657910347
	433 ; 1865.5000000000000000 ; 86.4499969482421875 ; -0.0062253363430500 ; -0.0030963867902756 ; 0.0000000100582840 ; 0.0019611530005932 ; 0.0091619268059731
	434 ; 1867.5000000000000000 ; 86.6499938964843750 ; -0.0073088421486318 ; -0.0035736584104598 ; -0.0000000030733645 ; 0.0023946943692863 ; 0.0107398824766278
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	447 ; 1893.5000000000000000 ; 89.2500000000000000 ; -0.0064668059349060 ; -0.0017396993935108 ; 0.0000000060535967 ; 0.0018100515007973 ; 0.0049558430910110
	448 ; 1895.5000000000000000 ; 89.4499969482421875 ; -0.0072274655103683 ; -0.0022829463705420 ; 0.0000000015366822 ; 0.0024538645520806 ; 0.0054447893053293
	449 ; 1897.5000000000000000 ; 89.6499938964843750 ; -0.0079874470829964 ; -0.0025649233721197 ; 0.0000000007683411 ; 0.0028170677833259 ; 0.0058324094861746
	450 ; 1899.5000000000000000 ; 89.8500061035156250 ; -0.0087462104856968 ; -0.0023767258971930 ; -0.0000000022351743 ; 0.0031204465776682 ; 0.0062456652522087
	451 ; 1901.5000000000000000 ; 90.0500030517578125 ; -0.0095312073826790 ; -0.0027136988937855 ; -0.0000000113621352 ; 0.0032594688236713 ; 0.0066082626581192
	452 ; 1903.5000000000000000 ; 90.2500000000000000 ; -0.0101483613252640 ; -0.0027814693748951 ; -0.0000000087544318 ; 0.0033918619155884 ; 0.0068701282143593
	453 ; 1905.5000000000000000 ; 90.4499969482421875 ; -0.0106342583894730 ; -0.0027928203344345 ; -0.0000000057741998 ; 0.0035273656249046 ; 0.0070174932479858
	454 ; 1907.5000000000000000 ; 90.6499938964843750 ; -0.0107148438692093 ; -0.0029026716947556 ; -0.0000000089406971 ; 0.0039246976375580 ; 0.0071157664060593
	455 ; 1909.5000000000000000 ; 90.8500061035156250 ; -0.0105518400669098 ; -0.0030918940901756 ; 0.0000000063329937 ; 0.0039424672722816 ; 0.0069778263568878
	456 ; 1911.5000000000000000 ; 91.0500030517578125 ; -0.0101404339075089 ; -0.0031706541776657 ; -0.0000000361353152 ; 0.0033689960837364 ; 0.0066079050302505
	457 ; 1913.5000000000000000 ; 91.2500000000000000 ; -0.0092760324478149 ; -0.0030265599489212 ; 0.0000000223517418 ; 0.0026854500174522 ; 0.0062240958213806
	458 ; 1915.5000000000000000 ; 91.4499969482421875 ; -0.0081302821636200 ; -0.0023563206195831 ; -0.0000000141561030 ; 0.0020820200443268 ; 0.0055385679006577
	459 ; 1917.5000000000000000 ; 91.6499938964843750 ; -0.0065266937017441 ; -0.0016038492321968 ; 0.0000000290572650 ; 0.0015765726566315 ; 0.0046516209840775
	460 ; 1919.5000000000000000 ; 91.8500061035156250 ; -0.0045733302831650 ; -0.0014312639832497 ; -0.0000000152736899 ; 0.0013293623924255 ; 0.0040885806083679
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	462 ; 1923.5000000000000000 ; 92.2500000000000000 ; -0.0053518190979958 ; -0.0025144889950752 ; -0.0000000027939677 ; 0.0018854700028896 ; 0.0085948407649994
	463 ; 1925.5000000000000000 ; 92.4499969482421875 ; -0.0081316959112883 ; -0.0038715461269021 ; 0.0000000057741998 ; 0.0030612796545029 ; 0.0116506386548281
	464 ; 1927.5000000000000000 ; 92.6499938964843750 ; -0.0106277316808701 ; -0.0055122114717960 ; 0.0000000014901161 ; 0.0049236863851547 ; 0.0145507715642452
	465 ; 1929.5000000000000000 ; 92.8500061035156250 ; -0.0127807259559631 ; -0.0064443387091160 ; -0.0000000214204192 ; 0.0057604797184467 ; 0.0165975093841553
	466 ; 1931.5000000000000000 ; 93.0500030517578125 ; -0.0138062387704849 ; -0.0067708939313889 ; -0.0000000298023224 ; 0.0058142095804214 ; 0.0174521207809448
	467 ; 1933.5000000000000000 ; 93.2500000000000000 ; -0.0140638500452042 ; -0.0070443451404572 ; -0.0000000257045034 ; 0.0064514130353928 ; 0.0174875110387802
	468 ; 1935.5000000000000000 ; 93.4499969482421875 ; -0.0136535465717316 ; -0.0075951367616653 ; 0.0000000640749960 ; 0.0070188343524933 ; 0.0164083540439606
	469 ; 1937.5000000000000000 ; 93.6499938964843750 ; -0.0122029483318329 ; -0.0073796659708023 ; 0.0000000409781933 ; 0.0064896345138550 ; 0.0142611265182495
	470 ; 1939.5000000000000000 ; 93.8500061035156250 ; -0.0105021893978119 ; -0.0069700926542282 ; 0.0000000149011612 ; 0.0058874934911728 ; 0.0121847093105316
	471 ; 1941.5000000000000000 ; 94.0500030517578125 ; -0.0091501474380493 ; -0.0054905414581299 ; -0.0000000551342971 ; 0.0051060318946838 ; 0.0103510618209839
	472 ; 1943.5000000000000000 ; 94.2500000000000000 ; -0.0086301863193512 ; -0.0045351684093475 ; 0.0000000640749960 ; 0.0032467693090439 ; 0.0092364251613617
	473 ; 1945.5000000000000000 ; 94.4499969482421875 ; -0.0078330039978027 ; -0.0029237866401672 ; 0.0000000402331359 ; 0.0024143755435944 ; 0.0083976686000824
	474 ; 1947.5000000000000000 ; 94.6500015258789062 ; -0.0066793113946915 ; -0.0023770630359650 ; 0.0000000290572650 ; 0.0023251324892044 ; 0.0069143027067184
	475 ; 1949.5000000000000000 ; 94.8500061035156250 ; -0.0084006190299988 ; -0.0021627619862556 ; 0.0000000178813941 ; 0.0028050616383553 ; 0.0060545355081558
	476 ; 1951.5000000000000000 ; 95.0500030517578125 ; -0.0106476098299026 ; -0.0028723180294037 ; 0.0000000061467289 ; 0.0031275898218155 ; 0.0081245675683022
\end{filecontents}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.dtabxlbl.d\endcsname{deviation table, x axis label and unit}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.dtabxlbl.u\endcsname{\ensuremath{\mu\text{Sec}}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.dtabxlbl.v\endcsname{Time}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.dtabylbl.d\endcsname{deviation table, y axis label and unit}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.dtabylbl.u\endcsname{\ensuremath{\text{V}}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.dtabylbl.v\endcsname{Deviation}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.dtabmin.d\endcsname{deviation table, minimum}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.dtabmin.u\endcsname{\ensuremath{\text{V}}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.dtabmin.v\endcsname{-0.0323196053504944}
%% atomic data element (ADE)
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.dtabmax.d\endcsname{deviation table, maximum}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.dtabmax.u\endcsname{\ensuremath{\text{V}}}
\expandafter\def\csname oct2tex.alucyl_d50_v800_S.dtabmax.v\endcsname{0.0288829654455185}
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%
\setlength\itemsep{0.5em} % set distance between items in itemize/enumerate environments
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\newcommand{\UtsCemName}{Test series 1, cement paste tests} % name, test series 1, cement paste tests
\newcommand{\UtsAirName}{Test series 5, reference tests on air} % name, test series 5, reference tests, air
\newcommand{\UtsWaterName}{Test series 6, reference tests on water} % name, test series 6, reference tests, water
\newcommand{\UtsAlucylName}{Test series 7, reference tests on aluminum cylinder} % name, test series 7, reference
\newcommand{\UtsCemShort}{Test series 1} % short name, test series 1, cement paste tests
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%
%###############################################################################
% Plot commands
%% plot node, delta T
% #1: x coord 1, start; #2: x coord 2, end; #3: y coord
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		(\OTuse{#1},\OTuse{#3}*0.5)%
		(\OTuse{#2},\OTuse{#3}*0.5)%
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% #1: x coord 1, start; #2: x coord 2, end; #3: y coord
\newcommand{\UplthdeltaII}[3]{%
	\addplot[forget plot,draw=none] coordinates {%
		(\OTuse{#1},\OTuse{#3}*0.5)%
		(\OTuse{#2},\OTuse{#3}*0.5)%
	} node[midway] {2$\cdot$ToF};
}
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% #1: x coord 1, start; #2: x coord 2, end; #3: y coord 1, lower limit; #4: y coord 2, upper limit
\newcommand{\Upltrectfill}[4]{%
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		(axis cs: \OTuse{#2},\OTuse{#3}) --
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		(axis cs: \OTuse{#1},\OTuse{#4}) -- cycle;
}
% plot mould panel with integrated sensors, vertical cross section
% #1: inner left bottom corner, x coordinate; #2: inner left bottom corner, y coordinate; #3: panel side, 0 = right side, 1 = left side
\newcommand{\Utikzmoldcsvert}[3]{%
	% check panel side enumerator
	\ifthenelse{\equal{#3}{0}}{\def\ex{1}}{\def\ex{-1}}
	% panel, part 1 coordinates
	\coordinate (Pan11) at (#1,#2);
	\coordinate (Pan12) at ($(Pan11)+(0,\hgt/2-\senradi-\sengap)$);
	\coordinate (Pan13) at ($(Pan12)+(\ex*\senoff-\ex*\sengap,0)$);
	\coordinate (Pan14) at ($(Pan13)+(0,\senradi-\senradii)$);
	\coordinate (Pan15) at ($(Pan14)+(\ex*\thk-\ex*\senoff+\ex*\sengap,0)$);
	\coordinate (Pan16) at ($(Pan11)+(\ex*\thk,0)$);
	% panel, part 2 coordinates
	\coordinate (Pan21) at ($(Pan11)+(0,\hgt)$);
	\coordinate (Pan22) at ($(Pan21)+(0,-\hgt/2+\senradi+\sengap)$);
	\coordinate (Pan23) at ($(Pan22)+(\ex*\senoff-\ex*\sengap,0)$);
	\coordinate (Pan24) at ($(Pan23)+(0,-\senradi+\senradii)$);
	\coordinate (Pan25) at ($(Pan24)+(\ex*\thk-\ex*\senoff+\ex*\sengap,0)$);
	\coordinate (Pan26) at ($(Pan21)+(\ex*\thk,0)$);
	% sensor coordinates
	\coordinate (Sen1) at ($(Pan11)+(-\ex*\senpro,\hgt/2-\senradi)$);
	\coordinate (Sen2) at ($(Sen1)+(\ex*\senoff+\ex*\senpro,0)$);
	\coordinate (Sen3) at ($(Sen2)+(0,\senradi-\senradii)$);
	\coordinate (Sen4) at ($(Sen3)+(\ex*\senthk,0)$);
	\coordinate (Sen5) at ($(Sen4)+(0,\senradii*2)$);
	\coordinate (Sen6) at ($(Sen3)+(0,\senradii*2)$);
	\coordinate (Sen7) at ($(Sen2)+(0,\senradi*2)$);
	\coordinate (Sen8) at ($(Sen1)+(0,\senradi*2)$);
	% sensor cover coordinates
	\coordinate (Cov1) at ($(Pan11)+(\ex*\thk,\hgt/2-\covradi)$);
	\coordinate (Cov2) at ($(Pan11)+(\ex*\thk,\hgt/2-\covradii)$);
	\coordinate (Cov3) at ($(Cov2)+(\ex*\covthk/2,0)$);
	\coordinate (Cov4) at ($(Cov3)+(0,\covradii*2)$);
	\coordinate (Cov5) at ($(Cov2)+(0,\covradii*2)$);
	\coordinate (Cov6) at ($(Cov1)+(0,\covradi*2)$);
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	\coordinate (Cov8) at ($(Cov1)+(\ex*\covthk,0)$);
	% rubber foam inside sensor cover coordinates
	\coordinate (Foam1) at ($(Sen4)+(0,\senradii-\foamrad)$);
	\coordinate (FoamRel) at ($(0,0)+(\ex*\thk+\ex*\covthk*0.5-\ex*\senthk-\ex*\senoff,\foamrad*2)$);
	% film tape coordinates
	\coordinate (Tape1) at ($(Pan11)+(-\ex*\tapoff,\hgt/2-\taplen/2)$);
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	\coordinate (Tape3) at ($(Sen1)+(-\ex*\tapoff,0)$);
	\coordinate (Tape4) at ($(Sen8)+(-\ex*\tapoff,0)$);
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	\coordinate (Tape6) at ($(Pan21)+(-\ex*\tapoff,-\hgt/2+\taplen/2)$);
	% draw mould
	\draw[black] (Pan11) -- (Pan12) -- (Pan13) -- (Pan14) -- (Pan15) -- (Pan16) -- cycle;
	\draw[black] (Pan21) -- (Pan22) -- (Pan23) -- (Pan24) -- (Pan25) -- (Pan26) -- cycle;
	\draw[draw=black,fill=black] (Sen1) -- (Sen2) -- (Sen3) -- (Sen4) -- (Sen5) -- (Sen6) -- (Sen7) -- (Sen8) -- cycle;
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}
% plot data validation, main graph
\newcommand{\Uplotvalidmain}{%
	\Upltrectfill{t0a.v}{t0b.v}{stabmin.v}{stabmax.v}
	\Upltrectfill{t1a.v}{t1b.v}{stabmin.v}{stabmax.v}
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	\UplthdeltaII{t2b.v}{t3a.v}{stabmax.v}
	\legend{$M$};
}
% plot data validation, sub graph
\newcommand{\Uplotvalidsub}{%
	\addplot[forget plot,draw=none,name path=dmin] table [x=c2, y=c3] {\OTtab};
	\addplot[forget plot,draw=none,name path=dq25] table [x=c2, y=c4] {\OTtab};
	\addplot[forget plot,draw=none,name path=dq75] table [x=c2, y=c6] {\OTtab};
	\addplot[forget plot,draw=none,name path=dmax] table [x=c2, y=c7] {\OTtab};
	\addplot[devminmax] fill between [of=dmin and dq25];
	\addplot[devq25q75] fill between [of=dq25 and dq75];
	\addplot[forget plot,devminmax] fill between [of=dq75 and dmax];
	\addplot[forget plot,devmean] table [x=c2, y=c5] {\OTtab};
	\legend{$R_{\min}^{\max}$, $R_{Q(0.25)}^{Q(0.75)}$};
}
% data validation caption part 2, legend for panel graphs
\newcommand{\Ucapvalidpangra}{\textbf{(a)}~Ensemble average $M$. \textbf{(b)}~Deviation from ensemble average $R$.}
%
%###############################################################################
% Title page informations
\title{Experimental study on cement paste using the ultrasonic pulse transmission method}
\author{Jakob Harden${}^1$}
%
%###############################################################################
% Begin document
%###############################################################################
\begin{document}
%
%###############################################################################
% Title page
%
\maketitle
%
\begin{flushleft}
	${}^1$Graz University of Technology, Faculty of Civil Engineering Sciences, Institute of Technology and Testing of Construction Materials, Inffeldgasse 24/I, 8010 Graz, Austria\label{aff:jharden}\\
	\vspace*{1em}
	Corresponding author email: \verb*|jakob.harden@tugraz.at|
\end{flushleft}
%
%###############################################################################
% Abstract
%
%\begin{abstract}
%	Zementleim ist ein hydraulisches Bindemittel, bestehend aus Wasser und Zement, das dem Beton im erhärteten Zustand in Form von Zementstein seine solide Materialmatrix verleiht. Die Erhärtung des Zementleims erfolgt hierbei durch einen exothermen, chemischen Prozess, der als Hydration bezeichnet wird.
%	Der Fortschritt dieses Vorgangs und die damit einhergehende Entwicklung der mechanischen Materialparameter hängt ganz wesentlich von der Zusammensetzung der Materialien und dem Temperaturgeschehen während des Vorgangs ab. Diesen Umständen wurde im Design dieser experimentellen Studie durch die gezielte Variation von Wasser-zu-Zement-Verhältnis und Probengröße Rechnung getragen. Im Zuge der Studie wurde eine Serie von Laborversuchen unter Verwendung des Ultraschall-Puls-Transmissionsverfahrens mit kombinierter Kompressions- und Scherwellenmessung (\UdevFreshconName{}) durchgeführt. Für die Zementleime kam gewöhnlicher Portland-Zement und Leitungswasser zur Anwendung.
%	Alle Messdaten wurden abschließend in Datensätzen, unter Verwendung eines Befehlsskripts und des offenen, binären Datenformat von \UOct{}, zusammengefasst. Die Datensätze dienen als Datenbasis für die Entwicklung von mechanischen Modellen, oder für die Feature-Extraktion im Maschine-Learning-Kontext.
%\end{abstract}
\begin{abstract}
	Cement paste is a hydraulic binding agent made of water and cement. It gives the concrete its solid material matrix when hardened. The hardening of the cement paste relies on the exothermic chemical process referred to as hydration. The progress of the hydration and the associated development of the mechanical material properties depend primarily on the materials' composition and the hydration temperature. These circumstances were taken into account in the design of this experimental study by deliberately varying the water-to-cement mass ratio and the specimen size.
	A test series on cement paste made of ordinary Portland cement and tap water was conducted using the ultrasonic pulse transmission method with combined compression and shear wave measurement.
	All measurement data and metadata were finally compiled into datasets in the open-source, binary file format of GNU Octave. These datasets can serve as a database for the development of mechanical models or for feature extraction in the context of machine learning.
\end{abstract}

%###############################################################################
% Background & Summary
%
\newpage
\section{Background \& Summary}\label{sec:background_summary}
%
%\Uautguide{This section should provide an overview of the study that generated the data, as well as outlining the potential reuse value of the data. Any previous publications that used these data, in whole or in part, should be cited and briefly summarized. Introductions for Articles and Comments should provide a similar explanation of why the work was performed and any relevant prior art.}
%
%Beton ist derzeit das bei weitem am häufigsten verwendete Material für die Herstellung von Baukonstruktionen. Dieser Baustoff verfügt über eine komplexe Materialmatrix, die aus Kies, Sand und Zementleim besteht. Der Zementleim fungiert hierbei als Klebstoff, der Kies und Sand zusammenhält. Der Zementleim, bestehend aus Zement und Wasser, durchläuft den exothermen, chemischen Prozess der Hydratation. Dabei entsteht der Zementstein, der dem Beton seine solide Materialmatrix verleiht.
Concrete is currently, by far, the most commonly used material for manufacturing building structures. This building material consists of gravel, sand and cement paste. The cement paste is the adhesive that holds the gravel and sand together. It is made of cement and water and undergoes an exothermic chemical reaction called hydration. The reaction product, the cement stone, gives the concrete its solid material matrix. In technical applications, the mechanical properties of concrete are of utmost importance. The development of the mechanical properties of the cement paste governs the development of these properties.

%Während sich für Festbeton bereits seit langem elasto-plastische Materialmodelle etabliert haben, befinden sich diese für das frühe Stadium des Hydratationsprozesses noch in Entwicklung. Die Entwicklung neuer Materialmodelle hängt hierbei sehr stark von mechanischen Testverfahren ab, welche die Basisdaten für die Materialbeschreibung liefern. Da sich klassische Testverfahren für Festkörper nicht auf weiche, viskoelastische Probekörper wie den Zementleim anwenden lassen werden, finden in diesem Bereich schon seit geraumer Zeit das Ultraschall-Puls Reflexionsverfahren und das Ultraschall-Puls Transmissionsverfahren Anwendung.
While elastoplastic material models have long been established for hardened concrete, they are still under development for the early stage of the hydration process. Designing well-suited material models depends heavily on mechanical test methods, which provide the necessary data. Since the classic test methods used for solids cannot be applied to soft, viscoelastic test specimens such as cement paste, ultrasonic pulse reflection and ultrasonic pulse transmission methods have become established testing methods in this field.

%Für Zementleim im frühen Stadium der Hydratation sind in der einschlägigen Literatur derzeit weder schlüssige mechanische Materialmodelle noch Messdaten zu finden. Um diesem Umstand Abhilfe zu schaffen, wurde diese experimentelle Studie durchgeführt. Sie stellt die benötigten Messdaten zur Verfügung und ebnet damit den Weg für die Schaffung von Materialmodellen für Zementleim im frühen Stadium der Hydratation.
In the relevant literature, neither conclusive mechanical material models nor measurement data are currently available for cement paste in the early hydration stage. The experimental study described here was carried out to remedy this situation. It provides the required measurement data and thus paves the way for designing material models for cement paste in the early hydration stage.

%Im frühen Stadium der Hydratation von Zementleim läuft ein wesentlicher Teil dieser exothermen, chemischen Reaktion ab. Das Reaktionsgeschehen hängt dabei ganz wesentlich vom Mischungsverhältnis der Materialien und dem Temperaturgeschehen während des Vorgangs ab. Deshalb liegt der Fokus dieser Studie auf der zeit- und temperaturabhängigen Entwicklung der Materialeigenschaften innerhalb der ersten 24 Stunden nach dem Mischen von Wasser und Zement. Das Ultraschall-Puls-Transmissionsverfahren wurde gewählt, da es für vollständig automatisierte und quasi-kontinuierliche Schallmessungen von pastösen Materialien gut geeignet ist.
%
A considerable part of the chemical reaction occurs in the early stages of cement paste hydration. The reaction process depends mainly on the mixing ratio of cement and water and the thermal conditions during the chemical reaction. Therefore, this study focuses on the time and temperature-dependent development of the material properties within the first 24 hours after mixing cement and water. The ultrasonic pulse transmission method using piezoelectric contact probes was chosen because it is well suited for fully automated and quasi-continuous sound wave measurements of pasty materials.
 
%Neben den Ultraschall-Tests wurde noch eine Reihe weiterer Versuche durchgeführt (z.B. Ultraschall-Messdiatsnz, Dichte der Probekörper). Diese liefern zusätzliche Informationen zum Zustand der Zementleime vor, während und nach den Ultraschall-Tests. Die Messdaten und Metadaten dieser Versuche wurden gemeinsam mit den Ultraschall-Messdaten zu einem Datensatz, bestehend aus den Rohdaten im Textformat, zusammengefasst. Anschließend wurden die Rohdaten zu einem binären Datensatz, bestehend aus einer einzigen Datei, kompiliert. Der Inhalt der binären Datensätze ist hierarchisch strukturiert, maschinenlesbar und liegt im quelloffenen Dateiformat von \UOct{} vor.
%In \Ufigref{fig:graphabstract} ist eine Zusammenfassung aller prozeduralen Komponenten dieser experimentellen Studie zu finden.
%
Besides the ultrasound tests, auxiliary tests were conducted (e.g. ultrasonic measuring distance and specimen density). These provide further information on the properties of the cement paste specimen before, during and after the ultrasound tests. The raw measurement data and metadata from these tests were combined with the ultrasound signal data to form a data set made of text files. The raw data were then compiled into a single binary file. The content of the binary data sets is hierarchically structured, machine-readable and available in the open-source file format of \UOct{}.
In \Ufigref{fig:graphabstract}, please find a summary of all procedural components of this experimental study.

% figure, study design
\begin{figure}[htbp]
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	\caption{The experimental study \textendash{} procedural components and workflow.}
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%Neben der experimentellen Studie für Zementleime wurden weitere Testserien mit Referenzmaterialien durchgeführt. Dafür wurden Wasser, Luft und ein Aluminium-Zylinder verwendet. Da diese Materialien bekannte Materialeigenschaften haben, können die Versuchsergebnisse zur Überprüfung der Funktionalität und zur Abschätzung der Eigenschaften des Versuchsgeräts herangezogen werden. Die Testserien für die Referenzmaterialien werden in dieser Arbeit im Zuge der technischen Validierung verwendet.
In addition to the experimental study on cement pastes, further reference test series were created. Water, air and an aluminium cylinder were used as reference materials. Since these materials have known material properties, the test results are suitable to validate whether the ultrasound test results reproducibly reflect the physical laws of sound propagation. Therefore, the data of those reference test series are used in this work to verify the technical validity of the measurement results.

%Sämtliche Datensätze aller hier referenzierten Testserien sind unter der Lizenz\autocite{licccby4} \emph{Creative Commons Attribution 4.0 International} lizenziert und stehen am Repositorium der Graz University of Technology zum Herunterladen zur Verfügung. Dadurch haben auch jene Forscher, die keinen Zugang zu den benötigten Versuchsgeräten, Materialien oder Laboreinrichtungen haben, die Möglichkeit, diese Daten zu nutzen.
All data records referenced here are licensed under the Creative Commons Attribution 4.0 International\autocite{licccby4} license and are available for download from the repository\autocite{repotug} of Graz University of Technology. That permits researchers who do not have access to the necessary experimental equipment, materials or laboratory facilities to benefit from this experimental data.

%Die zur Verfügung gestellten Datensätze eignen sich als Grundlage für die Entwicklung von angepassten Signalanalyse-Verfahren, der Entwicklung von Materialmodellen, der Feature-Extraktion und der Erstellung von Trainingsets im Kontext von Maschine-Learning-Verfahren. Darüber hinaus können die Daten als Referenz für alternative Versuchsaufbauten, Materialien und Analysemethoden herangezogen werden.
The data records provided are suitable for developing well-suited signal analysis methods and material models, feature extraction and creating training sets for machine learning. In addition, the data can serve as a reference for alternative test setups, materials and analysis methods.

%Ein Teil der Datensätze dieser Studie wurde in der Vergangenheit in zwei Publikationen verwendet und auf einschlägigen Konferenzen vorgestellt.
%Die erste Publikation befasst sich mit der Detektion von Driftsignalen, die in den Signaldaten gelegentlich zu beobachten sind. Die Detektionsmethode basiert auf gewichteten stochastischen Signaleigenschaften, die in überschneidenden Intervallen abgeschätzt werden.
%Die zweite Publikation befasst sich mit der Charakterisierung und temporalen Lokalisierung eines besonderen Störsignals. Dieses besteht aus dem Induktionsstrom, der durch das elektromagnetische Feld aufgrund der Anregung des piezoelektrischen Aktivators mit einem Hochspannungspuls im Messsystem verursacht wird. Für die temporale Lokalisation wurde dabei im Wesentlichen die Matched-Filter-Technik verwendet.
In the past, a subset of the datasets from this study were the basis of the analysis results presented in the form of two conference papers by the author of this study.
The first conference paper (see Harden\autocite{confpaper1}, 2023) proposes a method to detect drift signals observed in the ultrasound signal data. The method is based on weighted stochastic properties measured in overlapping signal partitions.
The second conference paper (see Harden\autocite{confpaper2}, 2023) concerns signal disturbance characterization and temporal localization. The investigated disturbance is the induction current caused by the electromagnetic field emerging from the high-voltage pulse excitation of the piezoelectric activator. Besides the signal's visual inspection to characterize the disturbance, a matched-filter technique was used for the temporal localization.

%###############################################################################
% Methods
% data citation format: https://www.nature.com/sdata/publish/submission-guidelines#data_citations
\section{Methods}\label{sec:methods}
%
%\Uautguide{The Methods section in Data Descriptors should describe any steps or procedures used in producing the data, including full descriptions of the experimental design, data acquisition and any computational processing. Specific data inputs should be explicitly referenced via our data citation format. See our detailed guidance for providing reproducible methods descriptions in Step 5. Articles should desribe the full scientific process for how the output or study was generated.}
%
% Section introduction
%In diesem Abschnitt werden zunächst die Aufgabenstellung und das experimentelle Design dieser Studie erläutert. Danach folgen die Beschreibungen des Versuchsaufbaus, der verwendeten Materialien und den daraus hergestellten Mischungen, der Versuchsgeräte und der Geräteeinstellungen. Außerdem werden die einzelnen Schritte der Versuchsdurchführung und die Zusammenfassung der damit akquirierten Rohdaten nachvollziehbar erklärt. Abschließend wird beschrieben, wie diese Rohdaten zu den hier referenzierten binären Datensätzen kompiliert und die technische Validität der Messdaten überprüft wurden.
This section first explains the task, the experimental design and the experimental setup of this study. Then, the materials and the mixtures produced from them are described. Furthermore, the testing devices, the testing device settings, the individual steps of the experiments and the acquisition of the experimental data are comprehensibly detailed. Finally, the methodology of the dataset compilation and the technical validation of the experimental data is presented.
%
%-------------------------------------------------------------------------------
% 1) Study design
\subsection{Study design}\label{subsec:experimental_design}
%
%Die Aufgabenstellung, die dieser experimentellen Studie zugrunde liegt, ist die Schaffung einer Datenbasis. Diese soll als Grundlage zur Beschreibung der mechanischen Eigenschaften von Zementleimen im frühen Stadium der Hydration basierend auf dem Ultraschall-Puls Transmissionsverfahren dienen. Um die Ergebnisse für technische Anwendungen nutzbringend verwenden zu können wurden dieser Studie die nachfolgend kurz zusammengefassten Randbedingungen zugrunde gelegt.
%
The task underlying this experimental study is to create a database. This should serve as a basis for describing the mechanical properties of cement pastes in the early stages of hydration based on the ultrasonic pulse transmission method. In order to be able to use the results for technical applications, this study is based on the boundary conditions summarized below.

%Gerade in der frühen Phase der Hydratation läuft ein nicht unwesentlicher Teil der exothermen, chemischen Reaktion von Wasser und Zement ab\cite{cempastetimedep}. Dies hat zur Folge, dass sich hier auch die mechanischen Eigenschaften am stärksten und am schnellsten verändern. Wie bei jeder chemischen Reaktion, stehen die Reaktionsgeschwindigkeit und die Eigenschaften der Reaktionsprodukte in starkem Zusammenhang mit den zugrunde liegenden reaktiven Materialien und dem Temperaturverlauf der Reaktion. Die zeitabhängige Enwicklung physikalischer Eigenschaften von Zementleim wird in der Arbeit von I. Maruyama und G. Igarashi (2014)\cite{IppeiMaruyama2014} ausführlich diskutiert.
%
In the early phase of hydration, a substantial part of the exothermic chemical reaction between water and cement occurs. That means that the mechanical properties also change most strongly and most quickly in this phase. As with any chemical reaction, the reaction rate, the reaction temperature and the properties of the reaction products are closely related to the underlying reactive materials and the thermal conditions during the reaction. This time-dependent evolution of the physical properties of cement paste is discussed by Maruyama\autocite{IppeiMaruyama2014} and Igarashi (2014).

%Neben dem Verlauf der chemischen Reaktion ist für die technische Verwendung von Zementleim in Zementmörteln und Betonen die Druckfestigkeit nach 28 Tagen von entscheidender Bedeutung. Die Festigkeit von erhärtetem Beton steht dabei in engem Zusammenhang mit dem Wasser-zu-Zement Massenverhältnis ($w/c$-Verhältnis) des Zementleims und der Festigkeitsklasse des Zements. In der Bautechnik werden vorwiegend Normalbetone mit Zylinderdruckfestigkeiten zwischen 20 und 40 MegaPascal verwendet. Diese Festigkeiten entsprechen den im Eurocode 2\autocite{eurocode2} definierten Druckfestigkeitsklassen C20/25, C25/30, C30/37, C35/45, C40/50. Der reziproke Zusammenhang zwischen Druckfestigkeit und $w/c$-Verhältnis wurde erstmals von D. Abrams (1918)\autocite{conmatabramslaw} vorgestellt. Eine Generalisierung dieses Zusammenhangs wird von T.S. Nagaraj und Z. Banu (1996)\autocite{NAGARAJ1996933} vorgeschlagen. Der Einfluss der Festigkeitklasse des Zements auf diesen generalisierten Zusammenhang wird von A. Kargari, H. Eskandari-Naddaf und R. Kazemi (2019)\autocite{KargariCemStrength} diskutiert.
%
In addition to the evolution of the chemical reaction, the compressive strength after 28 days is of crucial importance for the technical use of cement paste in cement mortars and concrete. The strength of hardened concrete is closely related to the water-to-cement mass ratio ($w/c$ ratio) of the cement paste and the strength class of the cement. In construction technology, mainly standard concretes with cylinder compressive strengths between 20 and 40 MegaPascals are used. These strengths correspond to the compressive strength classes C20/25, C25/30, C30/37, C35/45, C40/50 defined in Eurocode~2\autocite{eurocode2}. The reciprocal relationship between the compressive strength and the $w/c$ ratio was first presented by Abrams\autocite{conmatabramslaw} (1918). Nagaraj\autocite{NAGARAJ1996933} and Banu (1996) give a generalisation of this relationship. The influence of the cement strength in the context of that generalised relationship is discussed by Kargari\autocite{KargariCemStrength} et al. (2019).

%Für die technisch effiziente Nutzung des Zements ist darauf zu achten, dass der Mischung wenigstens so viel Wasser beigemengt wird, dass der Zement vollständig reagieren kann. Die optimale Wassermenge hängt dabei hauptsächlich von der chemischen Zusammensetzung des Zements, dem spezifischen Gewicht und der spezifischen Oberfläche der Zementkörner ab. Im Zuge einer experimentellen Studie von H.S. Wong und N.R. Buenfeld (2009)\autocite{WONG2009957} wurde für gewöhnlichen Portlandzement (OPC) das optimale $w/c$-Verhältnis mit einem Wert von 0.23 ermittelt. Um die Verarbeitbarkeit von Zementmörteln und Beton ohne weitere Zugabe von Fließmitteln zu gewährleisten kommt jedoch meist ein deutlich höheres $w/c$-Verhältnis im Bereich von 0.4 zur Anwendung. Der zusätzliche Wasserbedarf hängt dabei von einer ganzen Reihe von Faktoren ab (e.g. Korngößenverteilung der Gesteinskörnung, Zementgehalt der Beton- oder Mörtelmischung). Hinweise zur Verarbeitbarkeit von Zementmörteln finden sich in einer Arbeit von V. G. Haach, G. Vasconcelos, P. B. Lourenço (2011)\autocite{HaachVladimirG.2011Ioag}. Da diese Studie auf häufig auftretende technische Anwendungen fokusiert ist, wurde in dieser Studie die untere Grenze für den $w/c$ Wert mit 0.4 festgelegt.
%
For the technically efficient use of cement, it is important to ensure that enough water is added to the mixture to allow the cement to react completely. The optimal amount of water depends mainly on the chemical composition of the cement, the specific weight and the specific surface area of the cement grains. In an experimental study by Wong\autocite{WONG2009957} and Buenfeld (2009), the optimal water-cement ratio ($w/c$) for ordinary Portland cement (OPC) was determined to be 0.23. However, for mixtures without superplasticisers a notable higher $w/c$ ratio in the range of 0.4 and above is used to ensure the workability of cement mortars and concrete. The amount of excess-water depends on a whole range of factors (e.g. grain size distribution of the aggregate, cement content of the mixture). The dependency between the $w/c$ ratio and the  workability of mortars is discussed in a paper by Haach\autocite{HaachVladimirG.2011Ioag} et al. (2011). However, the present study focuses on frequently occurring technical applications. Therefore, the study's lower limit for the $w/c$ ratio is set to 0.4.

%Abgesehen von der Endfestigkeit und der Verarbeitbarkeit ist auch Augenmerk auf die Stabilität der Mischung zu legen. Eine stabile Mischung von Wasser und Zement sollte sich gut homogenisieren lassen und nicht zum \emph{Bluten} neigen. Bluten bedeutet hier, dass sich ein Teil des Wassers nach dem Mischen wieder absetzt. Dies ist häufig bei $w/c$-Verhältnissen größer als 0.6 zu beobachten. In einer Arbeit von Y. Ji, L. Pel und Z. Sun (2019)\cite{JI2019105866} wird dieser Sachverhalt eingehend behandelt. Basierend auf diesen Erkenntnissen wurde für diese Studie ein $w/c$-Verhältnis von 0.6 als oberer Grenzwert gewählt.
%
Apart from strength and workability, attention must also be paid to the stability of the mixture. A stable mixture of water and cement should be easy to homogenize and not tend to \emph{bleed}. Bleeding means that some of the water settles again after mixing. This behaviour is often observed at $w/c$ ratios greater than 0.6. This issue is dealt with in detail in a paper by Ji\autocite{JI2019105866} et al. (2019). Based on these findings, the study's upper limit for the $w/c$ ratio is set to 0.6.

%Eine geometrische Randbedingung ist durch die Ultraschall-Testapparatur vorgegeben. Im Zuge der Ultraschall-Tests wird der Zementleim in Schalungen gefüllt. Diese bestehen aus zwei Acrylglas-Platten mit integrierten Ultraschall-Kontaktprüfköpfen und einem Abstandhalter. Eine Abbildung dieser Schalungen findet sich in \Ufigref{fig:uptm_moulds}. Die zu den Acrylglas-Platten parallele vertikale Querschnittsfläche des Innenraums der Schalungen ist konstant. Daher ist das Volumen der Probe durch den horizontalen Abstand zwischen den beiden gegenüberliegenden Acrylglas-Platten vorgegeben. Dieser Abstand kann jedoch mit entsprechenden Abstandhaltern variiert werden und ist gleichzeitig ein Maß für die von der Schallwelle durchlaufende Strecke (Ultraschall-Messdistanz $D$).
%
A geometric boundary condition is given by the ultrasound test apparatus. Before performing the ultrasound tests, the cement paste is loaded into moulds. These consist of two acrylic glass panels with integrated ultrasound contact probes. The vertical cross-sectional area of the interior of the mould, parallel to the acrylic glass panels, is constant. Therefore, the specimen's volume is determined by the horizontal distance between the two opposite panels. However, this distance can be varied with appropriate spacers and is similar to the distance travelled by the sound wave (ultrasonic measuring distance $D$).

\paragraph{Study parameters:}
%Anhand der Eigenschaften der chemischen Reaktion von Zementleim, dem technischen Anwendungsbereich und den durch das Versuchsgerät vorgegeben Randbedingungen wurden die zwei wesentliche Parameter dieser Studie identifiziert.
%
Based on the properties of the chemical reaction of cement paste, the range of technical applications and the boundary conditions given by the test device, the two essential parameters of this study were identified.

%\begin{enumerate}
%	\item \textbf{Mischungsverhältnis von Wasser und Zement ($w/c$-Verhältnis):} Das Mischungsverhältnis beeinflusst die Reaktionsgeschwindigkeit, die Reaktionstemperatur und die mechanischen Eigenschaften der Reaktionsprodukte signifikant.
%	\item \textbf{Ultraschall-Messdistanz $D$:} Wie zuvor erwähnt ist die Messdistanz ein Maß für das Volumen des Probekörpers. Das Verhältnis von Oberfläche zu Volumen des Probekörpers steht aufgrund des Energieflusses durch die Schalung in engem Zusammenhang mit der thermischen Energiebilanz der chemischen Reaktion.
%\end{enumerate}
%
\begin{enumerate}
	\item \textbf{Mixing ratio of water and cement $\mathbf{w/c}$:} The mixing ratio has an important influence on the reaction rate, the reaction temperature and the physical properties of the reaction products.
	%
	\item \textbf{Ultrasonic measuring distance $\mathbf{D}$:} The ultrasonic measuring distance is a measure of the specimen's volume. Furthermore, the ratio of surface area to volume of the specimen is closely related to the thermal energy balance of the chemical reaction due to the heat flux through the moulds perimeter.
\end{enumerate}

%Um ein möglichst breites Spektrum des Materialverhaltens abzudecken, wurden diese beiden Parameter im Zuge dieser Studie variiert. Der Variation wurden dabei gezielt Grenzen gesetzt. Diese basieren auf den Angaben und Hinweisen der zuvor erwähnten Literatur.
%
In order to cover the broadest possible spectrum of material behaviour, these two parameters were varied in this study. The parameter variation was deliberately limited with respect to the findings and hints in the aforementioned literature.

\paragraph{Parameter variation:}
%Für die zuvor identifizierten Versuchsparameter und deren Grenzwerte wurden die nachfolgend aufgelisteten Werte gewählt und den Versuchen zugrunde gelegt.
%
The values listed below were selected for the previously identified test parameters and their limit values. They represent the basis for the ultrasound tests and, thus, the core of this study.

%\begin{itemize}
%	\item Messdistanzen $D = (25, 50, 70)$ Millimeter
%	\item Wasser-Zement Werte $w/c = (0.40, 0.45, 0.50, 0.55, 0.60)$
%	\item Versuchsdauer von 24 Stunden mit Messungen im Abstand von fünf Minuten
%	\item Sechs Versuchsdurchläufe für jedes Parameterpaar ($D$, $w/c$)
%\end{itemize}
%
\begin{itemize}
	\item Ultrasonic measuring distances $D = (25, 50, 70)$ mm
	\item Water-cement ratios $w/c = (0.40, 0.45, 0.50, 0.55, 0.60)$
	\item Ultrasound test duration of 24 hours
	\item Ultrasound signal recordings at five-minute intervals
	\item Six test runs for each parameter pair ($D$, $w/c$)
\end{itemize}

%Die Versuchsdauer von 24 Stunden umfasst dabei den größten Teil des Vorgangs des Erhärtens des Zementleims. Das Messintervall von fünf Minuten ergibt sich aus der bereits aus vielen technischen Anwendungen bekannten Reaktionsgeschwindigkeit und der Literatur\autocite{IppeiMaruyama2014}. Die sechs Testläufe dienen dazu, die Reproduzierbarkeit zu beurteilen und um Hinweise zur stochastischen Stabilität der Messergebnisse zu erhalten.
%
The test duration of 24 hours allows to cover a considerable part of the hardening process of the cement paste. The measurement interval of five minutes is related to the reaction rate already known from many technical applications and the literature (e.g. Ippei\autocite{IppeiMaruyama2014} and Maruyama, 2014). The six test runs were performed to assess the reproducibility of the tests and to receive hints concerning the stochastic properties of the measuring results.

\paragraph{Reference test series:}
%Neben der Testserie für Zementleim (\UtsCemShort{}) wurden weitere Testserien (\UtsAirShort{}, \UtsWaterShort{}, \UtsAlucylShort{}) mit den Referenzmaterialien (Luft, Wasser, Aluminium-Zylinder) erstellt. Diese Testserien dienen dazu, die Anwendbarkeit des Ultraschall-Versuchsgeräts auf unterschiedliche Probematerialien zu untersuchen und die Stabilität hinsichtlich der Reproduzierbarkeit der Messergebnisse zu validieren. Eine Verwendung der Signaldaten zur Kalibrierung des Versuchsgeräts war bei deren Erstellung nicht vorgesehen. Dieser Umstand spiegelt sich auch in den teilweise grob abgeschätzten Ultraschall-Messdistanzen wider (siehe auch \Usubsecref{subsec:test_procedures} und \Usecref{sec:technical_validation}).
%Diese Testserien werden in dieser Arbeit ebenfalls referenziert und dienen der technischen Validierung der Ultraschall-Versuche. Die vorrangigen Ziele dieser Validierung sind die Beurteilung der Reproduzierbarkeit und die Überprüfung, ob sich grundlegende physikalische Prinzipien der Schallausbreitung in den Signaldaten abbilden.
%
In addition to the test series for cement paste (\UtsCemShort{}), further reference test series (\UtsAirShort{}, \UtsWaterShort{}, \UtsAlucylShort{}) were conducted using air, water and an aluminium cylinder as testing materials. These test series serve to investigate the applicability of the ultrasonic test device to different materials and to validate the stability with regard to the reproducibility of the measurement results. Using that reference data for device calibration purposes or accuracy assessments is not intended. This fact is also reflected in the partly roughly estimated ultrasonic measuring distances (see also \Usubsecref{subsec:test_procedures} and \Usecref{sec:technical_validation}).
The reference test series' data records are also referenced and described in this work and serve to validate the ultrasound measurements at a technical level. The primary goals of this validation are to assess whether the ultrasound signal recordings reproducibly reflect the fundamental physical principles of sound propagation.

% 1.2) Experimental setup
\subsection{Experimental setup}\label{subsec:experimental_setup}
%
%Die Laborversuche, die im Zuge dieser Studie durchgeführt wurden, bestehen in erster Linie aus den Ultraschall-Puls Transmissionstests. Diese Vesuchstechnik bildet den aktuellen Stand der Technik zum Prüfen von Zementleim, Zementmörtel und Beton im frühen Stadium der Hydratation ab. In der Arbeit von Y.Y. Lim, S.T. Smith and C.K. Soh (2018)\autocite{LIM201850} ist ein Zusammenfassung zumaktuellen Stand der Technik hinsichtlich dieses Verfahrens zu finden. Das für die Ultraschall-Versuche verwendete Versuchsgerät ist das von Ruck, Große und Reinhardt (2021)\autocite{freshcon} vorgestellte \UdevFreshconName{}-Gerät. In den nachfolgenden Erläuterungen wird das zugrunde liegende Messprinzip und dessen technische Realisierung motiviert.
%
The laboratory tests carried out during this study consist primarily of ultrasonic pulse transmission tests. This testing method is the state-of-the-art technique (e.g. Lim\autocite{LIM201850} et al., 2018) for testing cement paste, cement mortar and concrete in the early stages of hydration. The test device used for the ultrasound tests is the \UdevFreshconName{} device presented by Ruck et al.\autocite{freshcon} (2021). The following explanations motivate the underlying measuring principle and its technical implementation.

\paragraph{Measuring principle:}
%Das Messprinzip des Ultraschall-Puls-Transmissionsverfahrens mit piezoelektrischen Elementen setzt sich aus drei Vorgängen zusammen.
%
The measuring principle of the ultrasonic pulse transmission method using piezoelectric elements consists of the fundamental processes (1) excitation, (2) transmission and (3) observation.

%\begin{enumerate}
%	\item \textbf{Anregung:} Mittels Schallquelle werden die Partikel eines Mediums zum Schwingen angeregt. Beim hier verwendeten Verfahren wird ein Kontaktprüfkopf (Aktivator) durch einen kurzen elektrischen Impuls mit hoher Spannung angeregt (Hochspannungs-Pulsgenerator). Das piezoelektrische Element im Kontaktprüfkopf verformt sich aufgrund der anliegenden Spannung (piezoelektrischer Effekt) und regt damit den anliegenden Probekörper zum Schwingen an.
%	\item \textbf{Transmission:} Die Schallwelle breitet sich im Medium aus. Die Ausbreitungsgeschwindigkeit der Schallwelle (Schallgeschwindigkeit) und der Wellenmodus (longitudinal oder transversal) hängen dabei stark von den Eigenschaften des Mediums ab.
%	\item \textbf{Beobachtung:} In einer definierten Distanz von der Schallquelle entfert befindet sich der Beobachter (ein Messinstrument), der die eintreffende Schallwelle wahrnimmt. Diese wird durch die eintreffende Schallwelle zum Schwingen angeregt. Beim hier verwendeten Verfahren geschieht dies ebenfalls durch einen Kontaktprüfkopf (Sensor). Das piezoelektrische Element im Kontaktprüfkopf wird dabei verformt und erzeugt eine elektrische Spannung (piezoelektrischer Effekt). Diese wird vom angekoppelten analog-digital-Konverter in ein digitales Signal umgewandelt.
%\end{enumerate}
%
\begin{enumerate}
	\item \textbf{Excitation:} The particles of a medium are excited to vibrate by a sound source. In the testing method used here, a piezoelectric contact probe (activator) is excited by a single pulse from a high-voltage pulse generator. The piezoelectric element in the contact probe deforms due to the applied voltage and thus excites the adjacent test body to vibrate. This behaviour is referred to as the \emph{piezoelectric effect} (e.g. Ruediger\autocite{piezoeffectRuediger2021}, 2021).
	%
	\item \textbf{Transmission:} The sound wave spreads out in the medium. The propagation speed of the sound wave (speed of sound) and the wave mode (longitudinal or transverse wave) depend on the mechanical properties of the medium. The sound wave is transmitted through the test specimen, which is positioned between the contact probes.
	%
	\item \textbf{Observation:} The observer (a measuring instrument), who perceives the incoming sound wave, is located at a defined distance from the sound source. In the testing method used here, the measuring device is a piezoelectric contact probe (sensor). The piezoelectric element in the contact probe is deformed by the sound pressure and generates an electrical voltage (inverse piezoelectric effect). The analogue-digital converter of a data acquisition unit connected to the probe converts the voltage into a digital signal.
\end{enumerate}

\paragraph{Ultrasonic pulse transmission tests:}
%Das für diese Studie verwendete Ultraschall-Versuchsgerät ist das \UdevFreshconName{}-Gerät\autocite{freshcon}. Dieses Versuchsgerät ist für voll automatisierte Ultraschall-Versuche an Mörtel und Beton konzipiert und bildet das zuvor beschriebene Messprinzip vollständig ab. Besonders berücksichtigt wurde dabei der Umstand, dass sich Schallwellen in festen und viskoelastischen Materialien nicht nur als Longitudinalwellen (wie in Luft und Wasser), sondern auch als Transversalwellen ausbreiten (see also S. Yoshida (2024)\autocite{acousticwaves2024}).
%
The ultrasound testing device used for this study is the \UdevFreshconName{}\autocite{freshcon} device. This testing device is designed for fully automated ultrasonic tests on mortar and concrete and fully reflects the measuring principle described above. Special concern was given to the fact that sound waves in solid and viscoelastic materials propagate not only as longitudinal waves (as in air and water) but also as transverse waves (e.g. Yoshida\autocite{acousticwaves2024}, 2024).

%Aus diesem Grund verfügt das \UdevFreshconName{}-Gerät über zwei unabhängige Anregungs- und Messsysteme. Eines für die Longitudinalwellen - diese werden auch Kompressionswellen oder Primärwellen bezeichnet - und eine zweites für die Transversalwellen - diese werden auch Scherwellen oder Sekundärwellen bezeichnet.
%
For this reason, the \UdevFreshconName{} device has two independent excitation and measurement systems. One for the longitudinal wave measurement \textendash{} these are also referred to as compression waves or primary waves \textendash{} and a second for the transverse wave measurement \textendash{} these are also referred to as shear waves or secondary waves.

%Außerdem verfügt die Versuchsapparatur über ein Temperaturmesssystem zur Erfassung der Temperatur der Probekörper. Das dafür verwendete Messsystem basiert auf dem thermoelektrischen Effekt eines gekoppelten Leiterpaares aus unterschiedlichen Metallen (thermo-couples).
%
The experimental apparatus also provides a temperature measuring system to record the test specimen's temperature. That measuring system is based on the thermoelectric effect of a coupled pair of conductors made of different metals also referred to as thermocouples (e.g. Roeser\autocite{thermocouplesroeser1940}, 1940).

%In der nachfolgenden Auflistung werden die einzelnen Komponenten der Versuchsapparatur beschrieben. Die zugehörige schematische Darstellung ist in Abbildung \Ufigref{fig:uptm_schema} zu finden.
%
The individual components of the experimental apparatus are detailed in the following list. Please, find the corresponding schematic illustration in \Ufigref{fig:uptm_schema}.

%Das experimentelle Setup umfasst im Wesentlichen die Gerätekomponenten, mit denen die Ultraschall-Pulstransmissionstests durchgeführt wurden. Diese bestehen aus:
%\begin{enumerate}
%	\item einem Messcomputer, auf dem die Kontroll- und Aufzeichnungssoftware \UswFreshconName{} installiert ist (CTL)
%	\item einer Puls-Trigger-Einheit zur Synchronisation von Pulsabgabe und Signalaufzeichnung (PTU)
%	\item einem Hochspannungs-Pulsgenerator zur Anregung der Aktivatoren (HVP)
%	\item einer Schalung in der jeweils ein Aktivator und ein Sensor eingebaut ist, longitudinale Charakteristik (M1)
%	\item einer Schalung, in der jeweils ein Aktivator und ein Sensor eingebaut ist, transversale Charakteristik (M2)
%	\item einem Oszilloskop mit digitaler Datenerfassungseinheit zur Aufzeichnung der Signaldaten (OSZ)
%	\item eine digitale Temperatur-Datenerfassungseinheit  zur Aufzeichnung der Probekörpertemperatur (DAQ)
%	\item Thermocouple-Leiterdraht (T1, T2, T3, T4)
%	\item zwei Signalkabel (BNC, zwei Adern) zwischen PTU, OSZ und HVP
%	\item zwei Signalkabel (BNC, zwei Adern) zwischen HVP, M1 und M2 (Angregungs-Puls)
%	\item zwei Signalkabel (BNC, zwei Adern) zwischen OSZ, M1 und M2 (Ultraschall-Signal)
%	\item und drei USB Kabel um PTU, OSZ und DAQ mit CTL zu verbinden (Stromversorgung und digitaler Daten-transfer)
%\end{enumerate}
%
\begin{enumerate}
	\item Measuring computer on which the test control and data recording software \UswFreshconName{}\autocite{freshcon400} is installed (CTL).
	\item Pulse trigger unit to synchronize pulse excitation and signal recording (PTU).
	\item High-voltage pulse generator for stimulating the activators (HVP).
	\item Moulds with built-in activators and sensors (M1, M2). See \Ufigref{fig:uptm_moulds}.
	\item Oscilloscope to record the ultrasound signal data (OSZ).
	\item Data acquisition unit to record the specimen temperature (DAQ).
	\item Thermocouple conductor wires (T1, T2, T3, T4). See \Ufigref{fig:uptm_thermo}.
	\item Signal cables (two-wire BNC) connecting PTU, OSZ and HVP.
	\item Signal cables (two-wire BNC) connecting HVP with M1 and M2 (pulse).
	\item Signal cables (two-wire BNC) connecting OSZ with M1 and M2 (signal).
	\item USB cables connecting PTU, OSZ and DAQ with CTL (power supply, data transfer).
\end{enumerate}

\paragraph{Auxiliary tests:}
%Zudem wurden weitere Versuche zur Bestimmung der Umgebungsbedingungen und der Eigenschaften der Probekörper vor und nach den Ultraschall-Tests durchgeführt. Die dafür verwendeten Versuchsgeräte sind gemeinsam mit Versuchsgeräten für die Schallmessung sind im nächsten Abschnitt angeführt.
In addition to the ultrasound tests, auxiliary tests were carried out to determine the environmental conditions and the properties of the specimens before and after the ultrasonic tests. The test equipment used for this purpose as well as for the ultrasound measurements are described in \Usubsecref{subsec:testing_devices}.

%-------------------------------------------------------------------------------
% 1.3) Testing devices
\subsection{Testing devices}\label{subsec:testing_devices}
%Die hier beschriebenen Geräte umfassen die Versuchsgeräte und Messgeräte aller Versuche, die im Zuge dieser Studie durchgeführt wurden. Diese sind in \Utabref{tab:devices} aufgelistet. In der Auflistung werden dabei nur jene Geräte berücksichtigt, die auch einen Einfluss auf die Messergebnisse haben. Die Genauigkeit der Messgeräte wurde den Angaben der Hersteller entnommen und ist in \Utabref{tab:devaccuracy} zu finden. Außerdem sind die Geräte, wie in \Utabref{tab:devgroups} dargestellt, in unterschiedlichen Gruppen zusammengefasst. Jede Gruppe umfasst dabei jene Geräte, die für jeweils eine der später beschriebenen Testprozeduren verwendet wurden. Abschließend werden die Geräteeinstellungen für die Ultraschall-Versuche der \UtsCemShort{} beschrieben.
%
The testing devices listed in \Utabref{tab:devices} include the devices used for all laboratory tests during this study. Nevertheless, this list is limited to those devices that may influence the measurement results of the ultrasound and the auxiliary tests. Nevertheless, the measuring device specifications are of utmost importance. These were taken from the manufacturer's data sheets and are summarized in \Utabref{tab:devaccuracy}. Furthermore, a subset of the testing devices was assigned to device groups related to distinct testing procedures. The device group definitions, please find in \Utabref{tab:devgroups}. Finally, the ultrasound testing device settings are described.

\paragraph{Testing device settings:}
%Die Geräteeinstellungen beschränken sich auf jene Geräte, die im Zusammenhang mit den Ultraschall-Tests stehen und damit Auswirkungen auf die Messergebnisse haben. Für alle anderen Geräte mussten keine besonderen Einstellungen vorgenommen werden. Die nachfolgende Auflistung beinhaltet die für diese Studie verwendeten Einstellungen. Hierbei ist zu erwähnen, dass sämtliche Geräteeinstellungen in den einzelnen Datensätzen gespeichert sind.
%
The testing device settings listed below are limited to those related to the ultrasound tests and thus affect the ultrasound measuring results. The software settings are also displayed here since the test control and recording software \UswFreshconName{} is an integral part of the ultrasound testing device \UdevFreshconName{}.
No particular settings had to be made for all other testing devices. All device and software settings are also available from the individual binary data set files described in \Usecref{subsec:data_structure_compiled}.

\begin{itemize}
	\item Oscilloscope (\Utabref{tab:devices}, \verb*|d10|)
	\begin{itemize}
		\item Sampling rate: 10 MHz
		\item Ensemble averaging: five measurements per sample
	\end{itemize}
	\item High-voltage pulse generator (\Utabref{tab:devices}, \verb*|d12|)
	\begin{itemize}
		\item Pulse voltage: 800 V in \UtsCemShort{}; 400, 600 and 800 V in \UtsAirShort{}, \UtsWaterShort{} and \UtsAlucylShort{}.
		\item Pulse width: 2.5 $\mu$s
	\end{itemize}
	\item Test control and data recording software \UswFreshconName{}
	\begin{itemize}
		\item Record primary channel (compression wave signal)
		\item Record secondary channel (shear wave signal)
		\item Record specimen temperature (four channels)
		\item Time delay between measurements: 5 minutes
		\item Number of tests $N = 288$ (equal to a test duration of 24 hours)
		\item Number of samples recorded before pulse excitation (prefix section length), $N_{\text{pfx}} = 1000$ or $N_{\text{pfx}} = 1638$ samples
	\end{itemize}
\end{itemize}

% table, devices
\begin{table}[htbp]
	\centering
	\begin{tabular}{p{0.8cm} p{3cm} p{3cm} p{4cm}}
		\toprule
		\textbf{DID} & \textbf{Name}      & \textbf{Vendor}      & \textbf{Model, Type}                   \\ \midrule
		\verb|d01|   & Signal cable 1     & N/A                  & BNC, $50\,\Omega/m$                    \\
		\verb|d02|   & Signal cable 2     & N/A                  & BNC, $50\,\Omega/m$                    \\
		\verb|d03|   & Signal cable 3     & N/A                  & BNC, $50\,\Omega/m$                    \\
		\verb|d04|   & Signal cable 4     & N/A                  & BNC, $50\,\Omega/m$                    \\
		\verb|d09|   & Thermocouple       & RS components        & probe type T                           \\
		\verb|d10|   & Oscilloscope       & picoScope            & PS-4262                                \\
		\verb|d11|   & Temperature DAQ    & National\newline Instruments & cDAQ-9171, NI-9217,\newline probes: \verb*|d09| \\
		\verb|d12|   & Pulse generator    & piezosystems Jena    & HVP-1000                               \\
		\verb|d13|   & Pulse trigger unit & SmartMote            & Smart${}^{\text{PULSE}}$, PTM v1.6     \\
		\verb|d14|   & Activator I        & Olympus IMS          & V101-RB\autocite{evidenttransducer}    \\
		\verb|d15|   & Sensor I           & Olympus IMS          & V101-RB\autocite{evidenttransducer}    \\
		\verb|d16|   & Activator II       & Olympus IMS          & V150-RB\autocite{evidenttransducer}    \\
		\verb|d17|   & Sensor II          & Olympus IMS          & V150-RB\autocite{evidenttransducer}    \\
		\verb|d20|   & Mold-25            & SmartMote            & $120 \times 90 \times 25$ mm           \\
		\verb|d21|   & Mold-50            & SmartMote            & $120 \times 90 \times 50$ mm           \\
		\verb|d22|   & Mold-70a           & SmartMote            & $120 \times 100 \times 70$ mm          \\
		\verb|d23|   & Mold-70b           & SmartMote            & $120 \times 90 \times 70$ mm           \\
		\verb|d24|   & Electronic balance & Sartorius            & BP12000S                               \\
		\verb|d25|   & Electronic balance & Sartorius            & LC2200P                                \\
		\verb|d26|   & Electronic balance & Mettler Toledo       & MS16001L                               \\
		\verb|d27|   & Sliding caliper    & Helios-Preisser      & DIGI-MET 1320                          \\
		\verb|d28|   & Compulsory mixer   & Hobart               & N50-619                                \\
		\verb|d29|   & Graduated beaker   & N/A                  & volume $1000$~cm${}^3$                 \\
		\verb|d30|   & Steel washer M12   & N/A                  & DIN~125,\newline DIN~EN~ISO~7089       \\
		\verb|d31|   & Thermocouple       & RS components        & probe type K                           \\
		\verb|d32|   & Temperature DAQ    & Testo GmbH           & Testo 177-T4,\newline probes: \verb*|d31| \\
		\verb|d33|   & Temperature logger & Testo GmbH           & Testo 177-H1                           \\
		\verb|d34|   & Trowel             & N/A                  & straight edges                         \\
		\verb|d35|   & Mold-90            & SmartMote            & $120 \times 90 \times 90\,mm$          \\ \bottomrule
	\end{tabular}
	\caption{Testing devices. Legend: DID \ldots unique device identifier.}\label{tab:devices}
\end{table}

% table, measuring device specifications
\begin{table}[htbp]
	\centering
	\begin{tabular}{p{0.8cm} p{6.5cm} p{3.5cm}}
		\toprule
		\textbf{DID} & \textbf{Name, Specification}                                                          & \textbf{Value, Unit}                   \\ \midrule
		\verb*|d10|  & picoScope PS-4262\autocite{picoscope4262}                                             & \textemdash{}                          \\
		             & vertical, rise time (calculated)                                                      & $70$ ns                                \\
		             & vertical, rise time ($\pm 20/\pm10$ mV)                                               & $88/117$ ns                            \\
		             & vertical, resolution                                                                  & 16 bits                                \\
		             & vertical, input sensitivity (10 divisions)                                            & $0.002/\text{div} \div 4/\text{div}$ V \\
		             & vertical, input ranges (11 ranges)                                                    & $\pm0.01\div\pm20$ V                   \\
		             & vertical, input characteristic, resistance                                            & $1\pm0.02$ M$\Omega$                   \\
		             & vertical, input characteristic, capacity                                              & $15\pm2$ pF                            \\
		             & vertical, DC acc. (\% of full scale)                                                  & $\pm0.25$ \%                           \\
		             & vertical, DC acc., ($\pm50/\pm20/\pm10$ mV)                                           & $\pm0.5/\pm1/\pm2$ \%                  \\
		             & horizontal, sampling rate                                                             & $10$ MS/s                              \\
		             & horizontal, timebase accuracy                                                         & $\pm50$ ppm                            \\
		             & horizontal, sample jitter (RMS)                                                       & $<10$ ps                               \\
		\verb*|d11|  & National Instruments cDAQ-9171\autocite{nicdaq9171},\newline NI-9217\autocite{ni9217} & \textemdash{}                          \\
		             & vertical resolution                                                                   & $24$ bits                              \\
		             & thermocouple probe (\Utabref{tab:devices}, \verb*|d09|)                               & type T                                 \\
		             & accuracy ($25^{\circ}$C), typical                                                     & $0.15$ ${}^{\circ}$C                   \\
		             & accuracy ($-40\div+70^{\circ}$C), maximum                                             & $0.35$ ${}^{\circ}$C                   \\
		\verb*|d24|  & Sartorius BP12000S\autocite{sarbp12000}                                               & \textemdash{}                          \\
		             & resolution ($0\div12,000$ g)                                                          & $0.1$ g                                \\
		             & linearity                                                                             & $\pm0.2$ g                             \\
		             & range capability                                                                      & single (fixed)                         \\
		\verb*|d25|  & Sartorius LC2200P\autocite{sarlc2200}                                                 & \textemdash{}                          \\
		             & resolution ($0\div2,200$ g)                                                           & $0.01$ g                               \\
		             & linearity (3 ranges)                                                                  & $\pm0.02/\pm0.02/\pm0.05$ g            \\
		             & range capability                                                                      & multirange                             \\
		\verb*|d26|  & Mettler Toledo MS16001L\autocite{mtms16001l}                                          & \textemdash{}                          \\
		             & resolution ($0\div16,200$ g)                                                          & $0.1$ g                                \\
		             & linearity                                                                             & $\pm0.2$ g                             \\
		             & range capability                                                                      & single                                 \\
		\verb*|d27|  & Helios-Preisser DIGI-MET 1320\autocite{hpdigimet1320}                                 & \textemdash{}                          \\
		             & resolution ($0\div150$ mm)                                                            & $0.01$ mm                              \\
		\verb*|d32|  & Testo 177-T4\autocite{testo177t4}                                                     & \textemdash{}                          \\
		             & thermocouple probe (\Utabref{tab:devices}, \verb*|d31|)                               & type K                                 \\
		             & accuracy ($-100\div+70^{\circ}$C)                                                     & $\pm0.3$ ${}^{\circ}$C                 \\
		             & resolution ($-100\div+70^{\circ}$C)                                                   & $0.1$ ${}^{\circ}$C                    \\
		\verb*|d33|  & Testo 177-H1\autocite{testo177h1}                                                     & \textemdash{}                          \\
		             & accuracy, temperature ($-25\div70^{\circ}$C)                                          & $\pm0.5$ ${}^{\circ}$C                 \\
		             & accuracy, rel. humidity ($2\div98\%,25^{\circ}$C)                                     & $\pm 3\pm0.06/\text{Kelvin}$ \%        \\
		             & resolution (temperature, rel. humidity)                                               & $\pm1$ digit                           \\ \bottomrule
	\end{tabular}
	\caption{Measuring device specifications. Legend: DID \ldots unique device identifier.}\label{tab:devaccuracy}
\end{table}

% table, device groups
\begin{table}[htbp]
	\centering
	\begin{tabular}{c l}
		\toprule
		\textbf{GID} & \textbf{Device ID's}                                        \\ \midrule
		\verb|g1|    & \verb|d26|, \verb|d28|                                      \\
		\verb|g2|    & \verb|d01|, \verb|d03|, \verb|d05|, \verb|d06|, \verb|d07|, \verb|d08|, \verb|d12|, \verb|d13|, \verb|d14|, \verb|d15| \\
		\verb|g3|    & \verb|d02|, \verb|d04|, \verb|d05|, \verb|d06|, \verb|d07|, \verb|d08|, \verb|d12|, \verb|d13|, \verb|d16|, \verb|d17| \\
		\verb|g4|    & \verb|d27|, \verb|d30|                                      \\
		\verb|g5|    & \verb|d09|, \verb|d11|                                      \\
		\verb|g6|    & \verb|d31|, \verb|d32|                                      \\
		\verb|g7|    & \verb|d26|, \verb|d29|, \verb|d34|                          \\ \bottomrule
	\end{tabular}
	\caption{Device groups. Legend: GID \ldots unique device group identifier.}\label{tab:devgroups}
\end{table}

% figure, ultrasonic pulse transmission test, FreshCon device configuration schema
\begin{figure}[htbp]
	\centering\fontfamily{cmss}\selectfont
	\begin{tikzpicture}[node distance=3.5cm]
		\node (HVP) [fcbox] {HVP};
		\node (PW) [fcbox,right of=HVP,yshift=1cm] {M1} node at (PW) [above,yshift=0.4cm] {Specimen I};
		\node (SW) [fcbox,right of=HVP,yshift=-1cm] {M2} node at (SW) [above,yshift=0.4cm] {Specimen II};
		\node (OSZ) [fcbox,right of=PW,yshift=-1cm] {OSZ} node at (OSZ) [below,yshift=-0.6cm] {2 channels};
		\node (DAQ) [fcbox,right of=SW,yshift=-1.5cm] {DAQ} node at (DAQ) [below,yshift=-0.6cm] {4 channels};
		\node (CTL) [fcbox,right of=OSZ,yshift=1.5cm] {CTL};
		\node (PT) [fcbox,above of=OSZ,yshift=-1cm] {PTU};
		\draw[fcarrow] ([yshift=0.1cm] HVP.east) to[out=0,in=180] node[above] {\Large\lightning} (PW.west);
		\draw[fcarrow] ([yshift=-0.1cm] HVP.east) to[out=0,in=180] node[below] {\Large\lightning} (SW.west);
		\draw[fcarrow] (PW.east) to[out=0,in=180] node[above] {\Large\AC} ([yshift=0.1cm] OSZ.west);
		\draw[fcarrow] (SW.east) to[out=0,in=180] node[below,yshift=-0.1cm] {\Large\AC} ([yshift=-0.1cm] OSZ.west);
		\draw[fcarrow] (SW) |- (DAQ) node[above,pos=0.75] {\Large\AC\normalsize~(T1-T3)};
		\draw[fcarrow] (OSZ.east) -| ([xshift=-0.2cm] CTL.south) node[above right,pos=0.05] {01001...};
		\draw[fcarrow] (DAQ) -| (CTL) node[above right,pos=0.05] {01001...};
		\draw[fcarrow] (CTL) |- (PT) node[above,pos=0.7] {\Large\clock\leftturn};
		\draw[fcarrow] (PT) -| (HVP) node[above,pos=0.05] {\Large$\lhd$};
		\draw[fcarrow] (PT) -- (OSZ) node[below,pos=0.25,rotate=90] {\Large$\lhd$};
		\draw[fcarrow] (DAQ)++(-3.5,-0.3) node[left] {air} --++(2.9,0) (DAQ) node[below,midway] {\Large\AC\normalsize~(T4)};
	\end{tikzpicture}
	\fontfamily{cmr}\selectfont%
	\caption{Schematic representation of the ultrasound testing device \UdevFreshconName{}. Legend: \lightning~\ldots high-voltage pulse; \AC~\ldots analogue signal; $\lhd$~\ldots trigger impulse.}\label{fig:uptm_schema}
\end{figure}

% figure, ultrasonic pulse transmission test, mould schema
\begin{figure}[htbp]
	\centering%
	\fontfamily{cmss}\selectfont%
	\footnotesize%
	\begin{tikzpicture}[%
		annotate/.style={circle,draw=black,fill=white,inner sep=1pt,minimum size=3mm,},%
		subtitle/.style={align=center,below,yshift=-0.1cm,},%
		legend/.style={anchor=west,},%
		mline/.style={|<->|,>=stealth,},%
		]
		% distances
		\def\wid{7.5}% panel width
		\def\hgt{3.5}% panel height
		\def\thk{0.3}% panel thickness
		\def\senradi{0.35}% sensor radius 1
		\def\senradii{0.42}% sensor radius 2
		\def\sengap{0.03}% gap between sensor and panel
		\def\senoff{0.07}% sensor offset
		\def\senpro{0.05}% sensor protrusion
		\def\senthk{0.5}% sensor thickness
		\def\wsp{0.7}% spacer width 1
		\def\wspa{0.5}% spacer width 2
		\def\wspb{2.0}% spacer width 3
		\def\covradi{1.2}% sensor cover, outer radius
		\def\covradii{0.6}% sensor cover, inner radius
		\def\covthk{0.8}% sensor cover, thickness
		\def\covoutletwid{0.25}% sensor cover, cable and connector outlet
		\def\foamrad{0.3}% backing rubber foam, radius
		\def\tapoff{0.05}% adhesive film tape, offset
		\def\tapwid{1.4}% adhesive film tape, width
		\def\taplen{3.5}% adhesive film tape, length
		\def\clampoff{0.3}% clamps, offset from panel border
		% front view, mould-25, mould-50, mould-70b
		\def\pxa{0}\def\pxb{0}\def\py{0}
		\filldraw[fill=gray!20,draw=black,dashed]
			(\pxa+1.55,\py+\hgt) -- +(0,-\hgt) -- +(4.4,-\hgt) -- +(4.4,0) -- 
			+(3.7,0){[rounded corners=\wsp cm] -- +(3.7,-\hgt+\wsp) -- 
			+(\wsp,-\hgt+\wsp)} -- +(\wsp,0) -- cycle;
		\draw (\pxa,\py) rectangle +(\wid,\hgt);
		\draw[name path=C1] (\pxa+\wid/2,\py+\hgt/2) circle[radius=\covradi];
		\draw[thin,dashed] (\pxa+\wid/2,\py+\hgt/2) circle[radius=\senradii];
		\draw[thin,dashed,name path=C2] (\pxa+\wid/2,\py+\hgt/2) circle[radius=\covradii];
		\draw[thick,densely dotted] (\pxa+\wid/2-\tapwid/2,\py+0.05) rectangle +(\tapwid,\hgt-0.1);
		\path[name path=L1] (\pxa+\wid/2-\covradi,\py+\hgt/2+\covoutletwid/2) -- +(\covradi,0);
		\path[name path=L2] (\pxa+\wid/2-\covradi,\py+\hgt/2-\covoutletwid/2) -- +(\covradi,0);
		\path[name intersections={of=C1 and L1,by=I11}];
		\path[name intersections={of=C2 and L1,by=I12}];
		\path[name intersections={of=C1 and L2,by=I21}];
		\path[name intersections={of=C2 and L2,by=I22}];
		\draw[thin,dashed] (I11) -- (I12);
		\draw[thin,dashed] (I21) -- (I22);
		\node at (\pxa+\clampoff,\py+\clampoff) {$\otimes$};
		\node at (\pxa+\wid-\clampoff,\py+\clampoff) {$\otimes$};
		\node at (\pxa+\clampoff,\py+\hgt-\clampoff) {$\otimes$};
		\node at (\pxa+\wid-\clampoff,\py+\hgt-\clampoff) {$\otimes$};
		% front view, annotation
		\draw[mline] (\pxa+2.25,\py+\hgt+0.2) -- node[above]{$\approx$120 mm} +(3,0);
		\draw[mline] (\pxa+1.55,\py+\hgt+0.2) -- node[above]{$\approx$30} +(\wsp,0);
		\draw[-{stealth}] (\pxa+4.55,\py+1.4) -- node[above,rotate=-45]{\small R=25} +(-45:\wsp);
		\draw[mline] (\pxa+6.15,\py+\wsp) -- node[below,rotate=90]{$\approx$90 mm} +(0,\hgt-\wsp);
		\draw[mline] (\pxa+6.15,\py) -- node[below,rotate=90]{$\approx$30} +(0,\wsp);
		\node[annotate,right] (A1) at (\pxa+0.2,\py+\hgt*0.5) {1};
		\node[annotate] (A2) at (\pxa+\wid/2,\py+2.65) {2};
		\node[annotate] (A3) at (\pxa+\wid/2,\py+\hgt/2) {3};
		\node[annotate] (A4) at (\pxa+2.2,\py+0.6) {4};
		\node[annotate,below right] (A5) at (\pxa+\wid/2-0.6,\py+\hgt-0.15) {7};
		\node[subtitle] (A6) at ($(\pxa,\py)!0.5!(\pxa+\wid,\py)$) {Front view\\Mould-25/50/70b};
		\node[left] (A7) at (\pxa+\wid/5,\py+\hgt/4) {\parbox{1cm}{\linespread{1}cable\\ outlet}};
		\draw[-{stealth}] (A7) -- ($(I11)!0.5!(I22)$);
		% cross section, mold-25
		\def\pxa{5.5}\def\pxb{6.2}\def\py{-5.5}
		\fill[gray] (\pxa,\py) rectangle +(\wsp,\wsp);
		\Utikzmoldcsvert{\pxa}{\py}{1}
		\Utikzmoldcsvert{\pxb}{\py}{0}
		\draw[mline] (\pxa,\py+3.7) -- node[above]{$\approx$25 mm} +(\wsp,0);
		\node[annotate,yshift=0.35cm] (A1) at ($(\pxa,\py)!0.5!(\pxb,\py)$) {4};
		\node[subtitle] (A2) at ($(\pxa,\py)!0.5!(\pxb,\py)$) {Cross section\\Mould-25};
		% cross section, mold-50
		\def\pxa{9.5}\def\pxb{10.9}\def\py{0}
		\fill[gray] (\pxa,\py) rectangle +(\wsp*2,\wsp);
		\Utikzmoldcsvert{\pxa}{\py}{1}
		\Utikzmoldcsvert{\pxb}{\py}{0}
		\draw[mline] (\pxa,\py+\hgt+0.2) -- node[above left]{12} +(-\thk,0);
		\draw[mline] (\pxa,\py+\hgt+0.2) -- node[above]{$\approx$50 mm} +(\wsp*2,0);
		\draw[black,thin] ($(\pxa,\py)!0.5!(\pxb,\py)$) -- +(0,\wsp);
		\node[annotate,yshift=0.35cm] (A1) at ($(\pxa,\py)!0.25!(\pxb,\py)$) {4};
		\node[annotate,yshift=0.35cm] (A2) at ($(\pxa,\py)!0.75!(\pxb,\py)$) {4};
		\node[subtitle] (A3) at ($(\pxa,\py)!0.5!(\pxb,\py)$) {Cross section\\Mould-50};
		% cross section, mold-70b
		\def\pxa{8.9}\def\pxb{10.9}\def\py{-5.5}
		\fill[gray] (\pxa,\py) rectangle +(\wsp,\wsp);
		\fill[gray!20] (\pxa+\wsp,\py) rectangle +(\wspb-2*\wsp,\wsp);
		\fill[gray] (\pxa+\wspb-\wsp,\py) rectangle +(\wsp,\wsp);
		\Utikzmoldcsvert{\pxa}{\py}{1}
		\Utikzmoldcsvert{\pxb}{\py}{0}
		\draw[mline] (\pxa,\py+\hgt+0.2) -- node[above]{$\approx$70 mm} +(\wspb,0);
		\node[annotate,below] (A1) at ($(\pxa,\py+\hgt*0.95)!0.5!(\pxb,\py+\hgt*0.95)$) {1};
		\draw[-{stealth}] (A1) -- +(-\wspb/2-\thk/2,0);
		\draw[-{stealth}] (A1) -- +(\wspb/2+\thk/2,0);
		\node[annotate,below] (A2) at ($(\pxa,\py+\hgt*0.8)!0.5!(\pxb,\py+\hgt*0.8)$) {7};
		\draw[-{stealth}] (A2) -- +(-\wspb/2+0.05,0);
		\draw[-{stealth}] (A2) -- +(\wspb/2-0.05,0);
		\node[annotate,anchor=north east] (A3) at (\pxa-0.5,\py+\hgt-0.7) {2};
		\node[annotate,anchor=north west] (A4) at (\pxb+0.5,\py+\hgt-0.7) {2};
		\node[annotate,anchor=west] (A5) at (\pxa-0.5,\py+\hgt*0.5) {3};
		\node[annotate,anchor=east] (A6) at (\pxb+0.5,\py+\hgt*0.5) {3};
		\node[annotate,yshift=0.35cm] (A7) at ($(\pxa,\py)!0.175!(\pxb,\py)$) {4};
		\node[annotate,yshift=0.35cm] (A8) at ($(\pxa,\py)!0.5!(\pxb,\py)$) {5};
		\node[annotate,yshift=0.35cm] (A9) at ($(\pxa,\py)!0.825!(\pxb,\py)$) {4};
		\node[annotate] (A10) at ($(\pxa,\py+\hgt*0.3)!0.5!(\pxb,\py+\hgt*0.3)$) {6};
		\draw[-{stealth}] (A10) -- +(\wspb/2+\thk+\covthk*0.75,0) -- +(\wspb/2+\thk+\covthk*0.4,0.7);
		\draw[-{stealth}] (A10) -- +(-\wspb/2-\thk-\covthk*0.75,0) -- +(-\wspb/2-\thk-\covthk*0.4,0.7);
		\node[subtitle] (A11) at ($(\pxa,\py)!0.5!(\pxb,\py)$) {Cross section\\Mould-70b};
		% legend
		\def\pxa{0}\def\py{-5.5}
		\node[legend] at ($(\pxa,\py)+(0,3.7)$) {\textbf{Legend:}};
		\node[legend] at ($(\pxa,\py)+(0,3.2)$) {1: Acrylic glass panel (\texttt{m11})};
		\node[legend] at ($(\pxa,\py)+(0,2.7)$) {2: Sensor cover (\texttt{m14})};
		\node[legend] at ($(\pxa,\py)+(0,2.2)$) {3: Sensor/Activator};
		\node[legend] at ($(\pxa,\py)+(0,1.7)$) {4: Rubber foam spacer (\texttt{m12})};
		\node[legend] at ($(\pxa,\py)+(0,1.2)$) {5: XPS board spacer (\texttt{m13})};
		\node[legend] at ($(\pxa,\py)+(0,0.7)$) {6: Rubber foam backing};
		\node[legend] at ($(\pxa,\py)+(0,0.2)$) {7: Polyimide film tape (\texttt{m7})};
		% front view, mould-70a
		\def\pxa{0}\def\pxb{0}\def\py{-11}
		\filldraw[fill=gray!20,draw=black,dashed] (\pxa+1.75,\py) rectangle +(\wid-2*1.75,0.5);
		\filldraw[fill=gray!20,draw=black,dashed] (\pxa+1.75,\py+0.5) rectangle +(0.5,\hgt-0.5);
		\filldraw[fill=gray!20,draw=black,dashed] (\pxa+\wid-1.75,\py+0.5) rectangle +(-0.5,\hgt-0.5);
		\draw (\pxa,\py) rectangle +(\wid,\hgt);
		\draw[name path=C1] (\pxa+\wid/2,\py+\hgt/2) circle[radius=\covradi];
		\draw[thin,dashed] (\pxa+\wid/2,\py+\hgt/2) circle[radius=\senradii];
		\draw[thin,dashed,name path=C2] (\pxa+\wid/2,\py+\hgt/2) circle[radius=\covradii];
		\draw[thick,densely dotted] (\pxa+\wid/2-\tapwid/2,\py+0.05) rectangle +(\tapwid,\hgt-0.1);
		\path[name path=L1] (\pxa+\wid/2-\covradi,\py+\hgt/2+\covoutletwid/2) -- +(\covradi,0);
		\path[name path=L2] (\pxa+\wid/2-\covradi,\py+\hgt/2-\covoutletwid/2) -- +(\covradi,0);
		\path[name intersections={of=C1 and L1,by=I11}];
		\path[name intersections={of=C2 and L1,by=I12}];
		\path[name intersections={of=C1 and L2,by=I21}];
		\path[name intersections={of=C2 and L2,by=I22}];
		\draw[thin,dashed] (I11) -- (I12);
		\draw[thin,dashed] (I21) -- (I22);
		\node at (\pxa+\clampoff,\py+\clampoff) {$\otimes$};
		\node at (\pxa+\wid-\clampoff,\py+\clampoff) {$\otimes$};
		\node at (\pxa+\clampoff,\py+\hgt-\clampoff) {$\otimes$};
		\node at (\pxa+\wid-\clampoff,\py+\hgt-\clampoff) {$\otimes$};
		% front view, annotation
		\draw[mline] ($(\pxa+1.75+\wspa,\py+\hgt+0.2)$) -- node[above]{$\approx$120 mm} +(\wid-2*1.75-2*\wspa,0);
		\draw[mline] ($(\pxa+1.75,\py+\hgt+0.2)$) -- node[above]{$\approx$20} +(\wspa,0);
		\draw[mline] (\pxa+\wid-1.75+0.2,\py+\wspa)-- node[below,rotate=90]{$\approx$100 mm} +(0,\hgt-\wspa);
		\draw[mline] (\pxa+\wid-1.75+0.2,\py)-- node[below,rotate=90]{$\approx$20} +(0,\wspa);
		\node[annotate,right] (A1) at (\pxa+0.2,\py+\hgt*0.5) {1};
		\node[annotate] (A2) at (\pxa+\wid/2,\py+2.65) {2};
		\node[annotate] (A3) at (\pxa+\wid/2,\py+\hgt/2) {3};
		\node[annotate] (A4) at (\pxa+1.75+\wspa/2,\py+0.25) {5};
		\node[annotate] (A5) at (\pxa+1.75+\wspa/2,\py+\hgt-0.25) {5};
		\node[annotate] (A6) at (\pxa+\wid-1.75-\wspa/2,\py+\hgt-\wspa/2) {5};
		\node[annotate,below right] (A7) at (\pxa+\wid/2-0.6,\py+\hgt-0.15) {7};
		\node[subtitle] (A8) at ($(\pxa,\py)!0.5!(\pxa+\wid,\py)$) {Front view\\Mould-70a};
		% cross section, mould-70a
		\def\pxa{8.9}\def\pxb{10.9}\def\py{-11}
		\fill[gray!20] ($(\pxa,\py)$) rectangle +(\wspb,\wspa);
		\Utikzmoldcsvert{\pxa}{\py}{1}
		\Utikzmoldcsvert{\pxb}{\py}{0}
		\draw[mline] (\pxa,\py+\hgt+0.2) -- node[above]{$\approx$70 mm} +(\wspb,0);
		\node[annotate] (A1) at ($(\pxa,\py+\wspa/2)!0.5!(\pxb,\py+\wspa/2)$) {5};
		\node[above] (A2) at ($(\pxa,\py+\hgt*0.7)!0.5!(\pxb,\py+\hgt*0.7)$)
		{\parbox{2cm}{\centering\linespread{1}annular\\ gap}};
		\draw[-{stealth}] (A2) -- (\pxa,\py+\hgt/2+\senradii);
		\draw[-{stealth}] (A2) -- (\pxb,\py+\hgt/2+\senradii);
		\node[subtitle] (A3) at ($(\pxa,\py)!0.5!(\pxb,\py)$) {Cross section\\Mould-70a};
	\end{tikzpicture}
	\fontfamily{cmr}\selectfont%
	\caption{Schematic view of the ultrasound testing device' mould configuration. Note: mould M1 and mould M2 shown in \Ufigref{fig:uptm_schema} are, except the built-in ultrasonic contact probes, identically constructed. With respect to the ultrasonic measuring distance $D$, one of the four mould variants (Mould-25, Mould-50, Mould-70a, Mould-70b) was chosen. The material ID's (e.g. \texttt{m11}) mentioned in the legend refer to the materials listed in \Utabref{tab:auxiliarymaterials}.}\label{fig:uptm_moulds}
\end{figure}

% figure, ultrasonic pulse transmission test, thermocouple placement schema
\begin{figure}[htbp]
	\centering%
	\fontfamily{cmss}\selectfont%
	\footnotesize%
	\begin{tikzpicture}[%
		annotate/.style={circle,draw=black,fill=white,inner sep=1pt,minimum size=3mm,},%
		subtitle/.style={align=center,below,yshift=-0.1cm,},%
		legend/.style={anchor=west,},%
		mline/.style={|<->|,>=stealth,},%
		]
		% distances
		\def\wid{7.5}% panel width
		\def\hgt{3.5}% panel height
		\def\thk{0.3}% panel thickness
		\def\senradi{0.35}% sensor radius 1
		\def\senradii{0.42}% sensor radius 2
		\def\sengap{0.03}% gap between sensor and panel
		\def\senoff{0.07}% sensor offset
		\def\senpro{0.05}% sensor protrusion
		\def\senthk{0.5}% sensor thickness
		\def\wsp{0.7}% spacer width 1
		\def\wspa{0.5}% spacer width 2
		\def\wspb{2.0}% spacer width 3
		\def\covradi{1.2}% sensor cover, outer radius
		\def\covradii{0.6}% sensor cover, inner radius
		\def\covthk{0.8}% sensor cover, thickness
		\def\covoutletwid{0.25}% sensor cover, cable and connector outlet
		\def\foamrad{0.3}% backing rubber foam, radius
		\def\tapoff{0.05}% adhesive film tape, offset
		\def\tapwid{1.4}% adhesive film tape, width
		\def\taplen{3.5}% adhesive film tape, length
		\def\clampoff{0.3}% clamps, offset from panel border
		% coordinates
		\coordinate (P1) at (0,0);
		\coordinate (P3) at (10,0);
		\coordinate (P4) at (0,-4);
		\coordinate (P5) at (8,-5.7);
		% longitudinal section
		\def\pxa{0}\def\pxb{0}\def\py{0}
		\fill[gray!20] (\pxa+1.55,\py) rectangle +(4.4,\hgt);
		\fill[gray] (\pxa+1.55+\wsp,\py+\hgt-\wsp) rectangle +(3,\wsp);
		\filldraw[fill=gray,draw=black]
			(\pxa+1.55,\py+\hgt) -- +(0,-\hgt) -- +(4.4,-\hgt) -- +(4.4,0) -- 
			+(3.7,0){[rounded corners=\wsp cm] -- +(3.7,-\hgt+\wsp) -- 
			+(\wsp,-\hgt+\wsp)} -- +(\wsp,0) -- cycle;
		\draw[thin] (\pxa,\py) rectangle +(\wid,\hgt);
		\draw[thin,dashed,name path=C1] (\wid/2,\hgt/2) circle[radius=\covradi];
		\draw[thin] (\wid/2,\hgt/2) circle[radius=\senradii];
		\draw[thin,dashed,name path=C2] (\wid/2,\hgt/2) circle[radius=\covradii];
		\draw[thick,densely dotted] (\pxa+\wid/2-\tapwid/2,\py+0.05) rectangle +(\tapwid,\hgt-0.1);
		\path[name path=L1] (\pxa+\wid/2-\covradi,\py+\hgt/2+\covoutletwid/2) -- +(\covradi,0);
		\path[name path=L2] (\pxa+\wid/2-\covradi,\py+\hgt/2-\covoutletwid/2) -- +(\covradi,0);
		\path[name intersections={of=C1 and L1,by=I11}];
		\path[name intersections={of=C2 and L1,by=I12}];
		\path[name intersections={of=C1 and L2,by=I21}];
		\path[name intersections={of=C2 and L2,by=I22}];
		\draw[thin,dashed] (I11) -- (I12);
		\draw[thin,dashed] (I21) -- (I22);
		\node at (\pxa+\clampoff,\py+\clampoff) {$\otimes$};
		\node at (\pxa+\wid-\clampoff,\py+\clampoff) {$\otimes$};
		\node at (\pxa+\clampoff,\py+\hgt-\clampoff) {$\otimes$};
		\node at (\pxa+\wid-\clampoff,\py+\hgt-\clampoff) {$\otimes$};
		% longitudinal section, thermocouples
		\fill[black] (\pxa+\wid/2-0.05,\py+1.6) rectangle +(0.1,2.2);
		\fill[black] (\pxa+5.1,\py+1.6) rectangle +(0.1,2.2);
		% longitudinal section, annotation
		\node[annotate] (T11) at (\pxa+\wid/2,\py+\hgt+0.7) {\small T1};
		\node[annotate] (T12) at (\pxa+5.35,\py+\hgt+0.7) {\small T3};
		\node[annotate,below] (T13) at (\pxa+2.55,\py+\hgt-0.1) {\small C};
		\node[annotate] (T14) at (\pxa+3.1,\py+1.75) {\small S};
		\node[align=center,below] (T1) at (\pxa+4,\py-0.1) {Longitudinal section};
		% cross section, mold-50
		\def\pxa{9.5}\def\pxb{10.9}\def\py{0}
		\fill[gray] (\pxa,\py) rectangle +(\wsp*2,\wsp);
		\fill[gray] (\pxa,\py+\hgt-\wsp) rectangle +(\wsp*2,\wsp);
		\Utikzmoldcsvert{\pxa}{\py}{1}
		\Utikzmoldcsvert{\pxb}{\py}{0}
		\draw[black,thin] ($(\pxa,\py)!0.5!(\pxb,\py)$) -- +(0,\wsp);
		% cross section, mold-50, thermocouples
		\fill[black] (\pxa+\wsp,\py+1.6) rectangle +(0.1,2.2);
		\fill[black] (\pxa+0.1,\py+1.6) rectangle +(0.1,2.2);
		% cross section, mold-50, annotation
		\draw[mline] (\pxa+\wsp*0.6,\py+\wsp) -- +(0,1.05) node[right,midway,xshift=-0.1cm,font=\sansmath\sffamily]{$\frac{1}{2}$};
		\draw[mline] (\pxa+\wsp*0.6,\py+\wsp+1.05) -- +(0,1.05) node[right,midway,xshift=-0.1cm,font=\sansmath\sffamily]{$\frac{1}{2}$};
		\node[annotate] (A1) at (\pxa+\wsp,\py+4.2) {\small T1};
		\node[annotate] (A2) at (\pxa+0.1,\py+4.2) {\small T2};
		\node[annotate] (A3) at (\pxa+\wsp*1.6,\py+3.2) {\small C};
		\node[annotate] (A4) at (\pxa+1,\py+1.1) {\small S};
		\node[subtitle] (A5) at ($(\pxa,\py)!0.5!(\pxb,\py)$) {Cross section\\Mould-50};
		% horizontal section
		\def\hgt{7.5}% panel height
		\def\taplen{1.4}% adhesive film tape, length
		\def\pya{-2}\def\pyb{-3.4}\def\px{0}
		\fill[gray!20] (\px+1.55+\wsp,\pyb) rectangle +(3,\wsp*2);
		\fill[gray] (\px+1.55,\pyb) rectangle +(\wsp,\wsp*2);
		\fill[gray] (\px+\hgt-1.55-\wsp,\pyb) rectangle +(\wsp,\wsp*2);
		\tikzset{topA/.pic = {\Utikzmoldcsvert{0}{0}{0}}}
		\path[rotate=90,transform shape] (\pya,-\wid) pic{topA};
		\tikzset{topB/.pic = {\Utikzmoldcsvert{0}{0}{1}}}
		\path[rotate=90,transform shape] (\pyb,-\wid) pic{topB};
		\draw (\px+\wid/2-\covradi,\pya+\thk+\covthk/3) -- +(\covradi-\covradii,0);
		\draw (\px+\wid/2-\covradi,\pyb-\thk-\covthk/3) -- +(\covradi-\covradii,0);
		\draw[thin,dashdotted] (\px+\clampoff,\pyb-2*\thk) -- (\px+\clampoff,\pya+2*\thk)
			node[pos=0.05] {$\times$}
			node[pos=0.95] {$\times$};
		\draw[thin] (\px+\clampoff-\thk/4,\pyb) -- (\px+\clampoff-\thk/4,\pya);
		\draw[thin] (\px+\clampoff+\thk/4,\pyb) -- (\px+\clampoff+\thk/4,\pya);
		\draw[thin,dashdotted] (\px+\wid-\clampoff,\pyb-2*\thk) -- (\px+\wid-\clampoff,\pya+2*\thk)
			node[pos=0.05] {$\times$}
			node[pos=0.95] {$\times$};
		\draw[thin] (\px+\wid-\clampoff-\thk/4,\pyb) -- (\px+\wid-\clampoff-\thk/4,\pya);
		\draw[thin] (\px+\wid-\clampoff+\thk/4,\pyb) -- (\px+\wid-\clampoff+\thk/4,\pya);
		% horizontal section, thermocouples
		\fill[black] (\px+\wid/2+\senradii,\pyb+0.15) circle[radius=2pt];
		\fill[black] (\px+\wid/2,\pyb+\wsp) circle[radius=2pt];
		\fill[black] (\px+\wid-1.55-\wsp-0.15,\pyb+\wsp) circle[radius=2pt];
		\fill[black] (\px+\wid/2+\covradi*1.5,\pyb-\wsp) circle[radius=2pt];
		% horizontal section, annotation
		\draw[mline] (\px+\wid*0.6,\pyb) -- +(0,\wsp) node[right,midway,xshift=-0.1cm,font=\sansmath\sffamily]{$\frac{1}{2}$};
		\draw[mline] (\px+\wid*0.6,\pyb+\wsp) -- +(0,\wsp) node[right,midway,xshift=-0.1cm,font=\sansmath\sffamily]{$\frac{1}{2}$};
		\node[annotate] (A1) at (\px+\wid*0.4,\pyb+\wsp) {\small T1};
		\draw[-{stealth}] (A1) -- (\px+\wid/2-0.05,\pyb+\wsp);
		\node[annotate] (A2) at (\px+\wid*0.75,\pyb-\thk-\covthk*1.25) {\small T2};
		\draw[-{stealth}] (A2) -- (\px+\wid/2+\senradii+0.05,\pyb+0.1);
		\node[annotate] (A3) at (\px+\wid*0.9,\pyb+\wsp) {\small T3};
		\draw[-{stealth}] (A3) -- (\px+\wid-1.55-\wsp-0.1,\pyb+\wsp);
		\node[annotate] (A4) at (\px+\wid*0.9,\pyb-\wsp) {\small T4};
		\draw[-{stealth}] (A4) -- (\px+\wid/2+\covradi*1.5+0.05,\pyb-\wsp);
		\node[annotate,above right] at (\px+1.65+\wsp,\pyb+0.1) {\small S};
		\node[left] (A5) at (\px+\wid/5,\pyb-\thk-\covthk*0.75) {\parbox{1cm}{cable outlet}};
		\draw[-{stealth}] (A5) -- (\px+\wid/2-\covradi*0.75,\pyb-\thk-\covthk/6);
		\draw[-{stealth}] (A5) -- (\px+\wid/2-\covradi*0.75,\pya+\thk+\covthk/6);
		\node[right,anchor=west] (SC1) at (\px+\clampoff+\thk/2,\pya+2*\thk) {screw};
		\node[right,anchor=west] (SC2) at (\px+\clampoff+\thk/2,\pya/2+\pyb/2) {\parbox{1cm}{screw\\ collar}};
		\node[subtitle] (T4) at ($(\px,\pyb-\thk-\covthk)!0.5!(\px+\wid,\pyb-\thk-\covthk)$) {Horizontal section};
		% legend
		\def\pxa{8.5}\def\pxb{8.5}\def\py{-1.8}
		\node[legend] at (\pxa,\py) {\textbf{Legend:}};
		\node[legend] at (\pxa,\py-0.5) {S: Specimen II};
		\node[legend] at (\pxa,\py-1) {C: Cover strips};
		\node[legend] at (\pxa,\py-1.5) {T1: Thermocouple 1};
		\node[legend] at (\pxa,\py-2) {T2: Thermocouple 2};
		\node[legend] at (\pxa,\py-2.5) {T3: Thermocouple 3};
		\node[legend] at (\pxa,\py-3) {T4: Thermocouple 4 (air)};
	\end{tikzpicture}
	\fontfamily{cmr}\selectfont%
	\caption{Thermocouple placement schema. Locations inside and outside of mould M2.}\label{fig:uptm_thermo}
\end{figure}

%-------------------------------------------------------------------------------
% 1.4) Materials
\subsection{Materials}\label{subsec:materials}
%In \UtsCemShort{} wurden Zementleime im frühen Stadium der Hydratation untersucht. Die dafür verwendeten Materialien und Mischungszusammensetzungen werden nachfolgend ausführlich beschrieben. Im Anschluss daran findet sich eine Bechreibung der Materialien, die für die Referenztests der Testserien \UtsAirName{}, \UtsWaterName{} und \UtsWaterName{} verwendet wurden.
%
In \UtsCemShort{}, cement pastes were investigated in the early stages of hydration. First, the materials and mixtures used for the cement paste tests are specified. Second, information on the reference materials used in \UtsAirShort{}, \UtsWaterShort{}, and \UtsAlucylShort{} is provided. Finally, auxiliary materials supporting the testing processes are described.

% Blending materials
\paragraph{Mixture components:}
%Die untersuchten Zementleime wurden ausschließlich aus gewöhnlichem Portland Zement und Leitungswasser hergestellt. Der für diese Testserie verwendete Zement stammt dabei aus zwei verschiedenen Chargen. Für alle Mischungen, die bis zum 28.03.2021 hergestellt wurden, stammt der Zement aus der Charge 34A. Nachfolgend wurde Zement des selben Herstellers aus der Charge 35A verwendet. Der Zement wurde in den selben Laborräumlichkeiten gelagert, in denen auch die Ultraschall-Tests durchgeführt wurden. Das Leitungswasser stammt aus dem Wasserversorgungssystem des Labors. Dieses wird aus einem Kontainer gespeist in dem das Wasser auf Raumtemperatur vorgehalten wird. Die Temperatur der Materialien wurde nicht explizit erfasst. Einen brauchbaren Anhaltspunkt für die Temperatur der Materialien liefert die Messung der Raumtemperatur. Eine kurze Beschreibung der verwendeten Mischungskomponenten und der Materialien für die Referenztests finden sich in \Utabref{tab:materials}.
%
The cement pastes examined were made exclusively from ordinary Portland cement and tap water. The cement used in \UtsCemShort{} comes from two different batches. For all mixtures produced up to March 28, 2021, the cement comes from batch 34A. For all tests conducted later, cement from from batch 35A was used. The cement was stored on the same laboratory premises where the ultrasound tests were carried out. The tap water comes from the laboratory's water supply system and is fed from a container where the water is kept at room temperature. Therefore, the temperature of the materials was not explicitly recorded. However, the environment temperature measurements provide a helpful indication of the material's temperature. A brief description of the mixture components and the materials used for the reference tests, please find in \Utabref{tab:materials}.

% table: materials
\begin{table}[htbp]
	\centering
	\begin{tabular}{c l p{5cm} l}
		\toprule
		\textbf{MID} & \textbf{Material} & \textbf{Product}           & \textbf{Vendor/Source} \\ \midrule
		\verb*|m1|   & Water             & tap water                  & LWSS                   \\
		\verb*|m2|   & Cement            & CEM I 42.5 N, batch 34A    & VOeZ                   \\
		\verb*|m3|   & Cement            & CEM I 42.5 N, batch 35A    & VOeZ                   \\
		\verb*|m4|   & Air               & ambient air in laboratory  & N/A                    \\
		\verb*|m5|   & Aluminium         & cylinder\newline
											diameter = 48.01 mm\newline
											height = 49.80 mm\newline
											weight = 247.8 g          & N/A                    \\ \bottomrule
	\end{tabular}
	\caption{Table of testing materials. Legend: MID~\ldots unique material identifier; LWSS~\ldots laboratory water supply system; VOeZ~\ldots Vereinigung der Österreichischen Zementindustrie.}\label{tab:materials}
\end{table}

% Mixtures
\paragraph{Mixture recipes:}
%Die Mischungszusammensetzungen für die Zementleime wurden so entworfen, dass sie den typischen Bereich bautechnischer Anwendungen abdecken. Aus diesem Bereich wurden fünf verschiedene Mischungszusammensetzungen mit den folgenden Wasser-Zement Werten gewählt: $w/c = \lbrace 0.40, 0.45, 0.50, 0.60 \rbrace$. Der Berechnung der Probenmenge wurde dabei das Probenvolumen von zwei Schalungen zugrunde gelegt. Da das Volumen der Schalungen von den gewählten Messdistanzen abhängt ($D = \lbrace 25, 50, 70 \rbrace$ mm), sind die Mischungsberechnungen in \Utabref{tab:mixtures} nach Wasser-Zement Wert $w/c$ und der Messdistanz $D$ aufgeschlüsselt.
%
The mixture recipes for the cement pastes are designed to cover the typical industrial applications. Five mixture compositions with the following water-cement ratios were chosen: $w/c = (0.40, 0.45, 0.50, 0.60)$. The mass calculations of the mixtures are related to the volume of two moulds of the ultrasound testing device. Since the mould's volume depends on the designated ultrasonic measuring distances $D = (25, 50, 70)$~mm, the mixture compositions shown in \Utabref{tab:mixtures} are broken down according to the water-cement ratio $w/c$ and the ultrasonic measuring distance $D$.

% table: mixture compositions
\begin{table}[htbp]
	\centering
	\begin{tabular}{l c c c c c}
		\toprule
		\multicolumn{2}{c}{\textbf{Mixture}} & \multicolumn{2}{c}{\textbf{Component 1}} & \multicolumn{2}{c}{\textbf{Component 2}} \\ \cmidrule(lr){1-2} \cmidrule(lr){3-4} \cmidrule(lr){5-6}
		\textbf{XID} & $\mathbf{w/c}$ & \textbf{MID} & $\mathbf{m_{c}}$ & \textbf{MID} & $\mathbf{m_{w}}$ \\
		& [ ] &  & [g] &  & [g] \\ \midrule
		\verb*|WC040_D25_B1| & $0.40$            &    \verb|m2|    & $800.0$          & \verb|m1| & $320.0$          \\
		\verb*|WC045_D25_B1| & $0.45$            &    \verb|m2|    & $800.0$          & \verb|m1| & $360.0$          \\
		\verb*|WC050_D25_B1| & $0.50$            &    \verb|m2|    & $800.0$          & \verb|m1| & $400.0$          \\
		\verb*|WC055_D25_B1| & $0.55$            &    \verb|m2|    & $800.0$          & \verb|m1| & $440.0$          \\
		\verb*|WC060_D25_B1| & $0.60$            &    \verb|m2|    & $800.0$          & \verb|m1| & $480.0$          \\
		\verb*|WC040_D50_B1| & $0.40$            &    \verb|m2|    & $1600.0$         & \verb|m1| & $640.0$          \\
		\verb*|WC045_D50_B1| & $0.45$            &    \verb|m2|    & $1600.0$         & \verb|m1| & $720.0$          \\
		\verb*|WC050_D50_B1| & $0.50$            &    \verb|m2|    & $1600.0$         & \verb|m1| & $800.0$          \\
		\verb*|WC055_D50_B1| & $0.55$            &    \verb|m2|    & $1600.0$         & \verb|m1| & $880.0$          \\
		\verb*|WC060_D50_B1| & $0.60$            &    \verb|m2|    & $1600.0$         & \verb|m1| & $960.0$          \\
		\verb*|WC040_D70_B1| & $0.40$            &    \verb|m2|    & $2200.0$         & \verb|m1| & $880.0$          \\
		\verb*|WC045_D70_B1| & $0.45$            &    \verb|m2|    & $2200.0$         & \verb|m1| & $990.0$          \\
		\verb*|WC050_D70_B1| & $0.50$            &    \verb|m2|    & $2200.0$         & \verb|m1| & $1100.0$         \\
		\verb*|WC055_D70_B1| & $0.55$            &    \verb|m2|    & $2200.0$         & \verb|m1| & $1210.0$         \\
		\verb*|WC060_D70_B1| & $0.60$            &    \verb|m2|    & $2200.0$         & \verb|m1| & $1320.0$         \\ \midrule
		\verb*|WC040_D25_B2| & $0.40$            &    \verb|m3|    & $800.0$          & \verb|m1| & $320.0$          \\
		\verb*|WC045_D25_B2| & $0.45$            &    \verb|m3|    & $800.0$          & \verb|m1| & $360.0$          \\
		\verb*|WC050_D25_B2| & $0.50$            &    \verb|m3|    & $800.0$          & \verb|m1| & $400.0$          \\
		\verb*|WC055_D25_B2| & $0.55$            &    \verb|m3|    & $800.0$          & \verb|m1| & $440.0$          \\
		\verb*|WC060_D25_B2| & $0.60$            &    \verb|m3|    & $800.0$          & \verb|m1| & $480.0$          \\
		\verb*|WC040_D50_B2| & $0.40$            &    \verb|m3|    & $1600.0$         & \verb|m1| & $640.0$          \\
		\verb*|WC045_D50_B2| & $0.45$            &    \verb|m3|    & $1600.0$         & \verb|m1| & $720.0$          \\
		\verb*|WC050_D50_B2| & $0.50$            &    \verb|m3|    & $1600.0$         & \verb|m1| & $800.0$          \\
		\verb*|WC055_D50_B2| & $0.55$            &    \verb|m3|    & $1600.0$         & \verb|m1| & $880.0$          \\
		\verb*|WC060_D50_B2| & $0.60$            &    \verb|m3|    & $1600.0$         & \verb|m1| & $960.0$          \\
		\verb*|WC055_D70_B2| & $0.55$            &    \verb|m2|    & $2200.0$         & \verb|m1| & $1210.0$         \\
		\verb*|WC060_D70_B2| & $0.60$            &    \verb|m2|    & $2200.0$         & \verb|m1| & $1320.0$         \\ \bottomrule
	\end{tabular}
	\caption{Table of mixture compositions. Legend: XID~\ldots unique mixture identifier; MID~\ldots unique material identifier (see \Utabref{tab:materials}); $m_c$~\ldots mass of cement; $m_w$~\ldots mass of water.}\label{tab:mixtures}
\end{table}

\paragraph{Reference materials:}
%Neben der \UtsCemShort{} für Zementleime wurde eine Reihe weiterer Ultraschall-Tests für Materialien mit bekannten Materialparametern durchgeführt. Diese dienen dazu, die Funktionalität des Ultraschall-Testgeräts und die Stabilität der Messergebnisse zu überprüfen und eine Vergleichsbasis zu den Messergebnissen für Zementleim zu schaffen. Die Referenzmaterialien sind nachfolgend nach den Testserien, in denen diese verwendet wurden, aufgelistet.
%
In addition to \UtsCemShort{} on cement pastes, several other ultrasound tests were carried out using materials with known material parameters (air, water, aluminium). These serve as a reference for the cement paste tests and allow for assessing the reproducibility of the ultrasound tests. The reference materials are listed according to the respective test series below.

%\begin{itemize}
%	\item \UtsAirShort{}\autocite{dataair}: Als Testmaterial wurde die Umgebungsluft im Laborraum herangezogen. Eine Beschreibung der Umgebungsbedingungen findet sich in \Usubsecref{subsec:environ_conditions}.
%	\item \UtsWaterShort{}\autocite{datawater}: Als Testmaterial wurde Leitungswasser aus dem Wasserversorgungssystem des Labors verwendet.
%	\item \UtsAlucylShort{}\autocite{dataalucyl}: Als Testmaterial wurde ein Aluminium-Zylinder mit einem Durchmesser von 50 mm und einer Höhe von 50 mm verwendet.
%\end{itemize}
%
\begin{itemize}
	\item \UtsAirShort{}\autocite{dataair}: ambient air in the laboratory room (see \Utabref{tab:materials}, \verb*|m4|).
	\item \UtsWaterShort{}\autocite{datawater}: tap water from the laboratory's water supply system (see \Utabref{tab:materials}, \verb*|m1|).
	\item \UtsAlucylShort{}\autocite{dataalucyl}: aluminium cylinder (see \Utabref{tab:materials}, \verb*|m5|).
\end{itemize}

\paragraph{Auxiliary materials:}
%Für die Durchführung der Ultraschall-Versuche an Zementleimen wurden zusätzliche Hilfsmittel zur Vorbereitung der Schalungen benötigt. Die Verwendung dieser Hilfsmittel ist in der Beschreibung der Testprozedur UTT in \Usubsecref{subsec:test_procedures} zu finden. Diese Hilfsmittel sind in \Utabref{tab:auxiliarymaterials} angeführt. Abgesehen davon, sind in dieser Auflistung auch die Materialien der Schalungen des Ultraschall-Versuchsgeräts zu finden.
%
Additional materials (see \Utabref{tab:auxiliarymaterials}, \verb*|m6| to \verb*|m10|) were used to prepare the moulds and specimen for the ultrasound tests on cement pastes. The application of these materials is explained in the sampling procedure in \Usubsecref{subsec:test_procedures}. Apart from that, this list also covers the materials the components of the moulds of the ultrasonic testing device are made of (see \Utabref{tab:auxiliarymaterials}, \verb*|m11| to \verb*|m14|).

% table: auxiliary materials
\begin{table}[htbp]
	\centering
	\begin{tabular}{p{0.8cm} l p{5cm} l}
		\toprule
		\textbf{MID} & \textbf{Description} & \textbf{Material}          & \textbf{Vendor}        \\ \midrule
		\verb*|m6|   & Release agent        & Corn germ oil              & Mazola                 \\
		\verb*|m7|   & Adhesive tape        & Polyimide film tape 5413\newline
		                                      width = 50.8 mm\newline
		                                      thickness = 0.069 mm       & 3M                     \\
		\verb*|m8|   & Cling film           & Polyethylene               & N/A                    \\
		\verb*|m9|   & Air balloon          & Latex                      & N/A                    \\
		\verb*|m10|  & Vaseline grease      & Paraffin                   & N/A                    \\ \midrule
		\verb*|m11|  & Acrylic glass panel  & PMMA\newline
		                                      thickness = 12 mm          & N/A                    \\
		\verb*|m12|  & Rubber foam spacer   & Cell-caoutchouc, EPDM\newline
		                                      thickness = 25 mm          & N/A                    \\
		\verb*|m13|  & XPS board spacer     & Extruded Polystyrene\newline
		                                      embossed surface\newline
											  thickness = 20 mm          & N/A                    \\
		\verb*|m14|  & Sensor cover         & Disk, POM                  & N/A                    \\ \bottomrule
	\end{tabular}
	\caption{Table of auxiliary materials. Legend: MID~\ldots unique material identifier; PMMA~\ldots polymethyl methacrylate; EPDM~\ldots ethylene propylene diene monomer rubber; POM~\ldots polyoxymethylene.}\label{tab:auxiliarymaterials}
\end{table}

%-------------------------------------------------------------------------------
% 1.5) Ambient conditions
\subsection{Environmental conditions}\label{subsec:environ_conditions}
%Alle Labortests wurden in zwei klimatisierten Räumen durchgeführt (Graz University of Technology, Campus Inffeldgasse, Bautechnikzentrum). Da in diesen diese Räumen auch akkreditierter Versuche durchgeführt werden, wird die Raumtemperatur und die relative Luftfeuchtigkeit innerhalb vorgegebener Grenzwerte gehalten.
%
All laboratory tests were carried out in two air-conditioned rooms (Graz University of Technology, Campus Inffeldgasse, Construction Technology Center). Since these rooms are also used for accredited testing, the room temperature and relative humidity are kept within the limits specified below.

\begin{itemize}
	\item Ambient temperature $\vartheta = +20 \pm 1.5^\circ$C
	\item Relative humidity $U = 60 \pm 5$ \%
\end{itemize}

%Bei allen Versuchen, bei denen diese Umgebungsbedinungen nicht erfüllt waren, ist dies explizit in den Tabellen mit der Gerätekonfiguration vermerkt.
%
Whenever these conditions were not met during a test run, this is explicitly noted in the tables next to the device configuration. See also \Utabref{tab:testsetup_cem_wc40}, \Utabref{tab:testsetup_cem_wc45}, \Utabref{tab:testsetup_cem_wc50}, \Utabref{tab:testsetup_cem_wc55}, \Utabref{tab:testsetup_cem_wc60} and \Utabref{tab:testsetup_ref}.

%-------------------------------------------------------------------------------
% 1.6) Test procedures
\subsection{Testing procedures}\label{subsec:test_procedures}
%In diesem Abschnitt werden die Testprozeduren aller in dieser Arbeit referenzierten Testserien ausführlich beschrieben. Da in den einzelnen Datensätzen der Testserien die Laborversuche eines Testdurchlaufs zusammengefasst sind, wird zunächst der Zusammenhang zwischen Testserie und Laborversuch hergestellt. Nachfolgend wird das Prozedere der einzelnen Laborversuche eingehend erläutert. Das zentrale Element jedes Testdurchlaufs ist der Ultraschall-Test. Alle anderen Versuche liefern zusätzliche Informationen zum Zustand der Proben und den Umgebungsbedingungen, vor, während und nach dem Ultraschall-Test. In \Ufigref{fig:test_process_workflow} findet sich eine schematische Darstellung der logischen Abfolge von Laborversuchen eines Testdurchlaufs für \UtsCemName{}.
%
This section describes the testing procedures of all laboratory tests conducted during this study. Since the laboratory test results of a test run are summarized in the individual datasets of a test series, the relationship between the test series and the laboratory test is established first. Then, the individual laboratory test procedures are explained in detail. The central element of each test run is the ultrasonic pulse transmission test. All other tests provide additional information on the tested specimen and the ambient conditions before, during and after the ultrasound test. Please find a schematic representation of the test sequence of a test run on cement paste in \Ufigref{fig:test_process_workflow}.

% figure, testing process workflow
\begin{figure}[htbp]
	\centering\fontfamily{cmss}\selectfont
	\begin{tikzpicture}[node distance=1.7cm]
		\node (start) [fcstartstop] {START};
		\node (p1) [fcproc, below of=start,yshift=0.3cm] {\parbox{3cm}{\centering Environment temperature}};
		\node (p2) [fcproc, below of=p1,yshift=0.1cm] {\parbox{3cm}{\centering Mixing}};
		\node (io1) [fcio, left of=p2, xshift=-2.5cm] {\parbox{2.2cm}{\centering Mixture\\recipe}};
		\node (io2) [fcio, right of=p2, xshift=2.5cm] {\parbox{2.2cm}{\centering Mixture components}};
		\node (p3) [fcproc, below of=p2] {\parbox{3cm}{\centering Fresh paste density}};
		\node (cfg) [fcsettings, below of=p3,yshift=-0.4cm] {\parbox{3cm}{\centering Ultrasound testing device configuration}};
		\node (io3) [fcio, right of=cfg, xshift=2.5cm] {\parbox{2.2cm}{\centering Device\\ settings}};
		\node (p41) [fcproc, below of=cfg, xshift=-2.5cm,yshift=-0.3cm] {\parbox{4cm}{\centering Sampling\\ (mould M1)}};
		\node (p42) [fcproc, below of=cfg, xshift=2.5cm,yshift=-0.3cm] {\parbox{4cm}{\centering Sampling\\ (mould M2)}};
		\node (p5) [fcproc, below of=p41,yshift=-0cm] {\parbox{4cm}{\centering Ultrasonic pulse transmission test}};
		\node (p6) [fcproc, below of=p42,yshift=-0.2cm] {\parbox{4cm}{\centering Ultrasonic pulse transmission test,\\ Specimen temperature}};
		\node (p51) [fcproc, below of=p5, yshift=-0.25cm] {\parbox{4cm}{\centering Ultrasonic measuring distance}};
		\node (p61) [fcproc, below of=p6, yshift=-1.4] {\parbox{4cm}{\centering Ultrasonic measuring distance}};
		\node (p52) [fcproc, below of=p51,yshift=-0.0cm] {\parbox{4cm}{\centering Solid specimen density}};
		\node (p62) [fcproc, below of=p61,yshift=-0.0cm] {\parbox{4cm}{\centering Solid specimen density}};
		\node (arc) [fcproc, below of=p52, xshift=2.5cm] {\parbox{4cm}{\centering Specimen archiving\\ (specimen I and II)}};
		\node (end) [fcstartstop, below of=arc, yshift=3mm] {STOP};
		% arrows
		\draw [fcarrow] (start) -- (p1);
		\draw [fcarrow] (p1) -- (p2);
		\draw [fcarrow] (io1) -- (p2);
		\draw [fcarrow] (io2) -- (p2);
		\draw [fcarrow] (p2) -- (p3);
		\draw [fcarrow] (p3) -- (cfg);
		\draw [fcarrow] (cfg) -- (p41);
		\draw [fcarrow] (cfg) -- (p42);
		\draw [fcarrow] (io3) -- (cfg);
		\draw [fcarrow] (p41) -- (p5);
		\draw [fcarrow] (p42) -- (p6);
		\draw [fcarrow] (p5) -- (p51);
		\draw [fcarrow] (p51) -- (p52);
		\draw [fcarrow] (p6) -- (p61);
		\draw [fcarrow] (p61) -- (p62);
		\draw [fcarrow] (p52) |- (arc);
		\draw [fcarrow] (p62) |- (arc);
		\draw [fcarrow] (arc) -- (end);
		% left brace, specimen I
		\draw ([xshift=-.2cm]p41.north west) -|+(-0.5,-4)|- ([xshift=-.2cm]p52.south west) node[above,pos=0,rotate=90] {Specimen I};
		% right brace, specimen II
		\draw ([xshift=.2cm]p42.north east) -|+(0.5,-4)|- ([xshift=.2cm]p62.south east) node[below,pos=0,rotate=90] {Specimen II};
	\end{tikzpicture}
	\fontfamily{cmr}\selectfont%
	\caption{The testing process workflow of a test run in \UtsCemShort{}.}
	\label{fig:test_process_workflow}
\end{figure}

%Für die \UtsCemShort{}\autocite{datacem} wurden folgende Laborversuche durchgeführt. Die dafür verwendeten Geräte sind, aufgeschlüsselt nach Datensätzen, in \Utabref{tab:testsetup_cem_wc40}, \Utabref{tab:testsetup_cem_wc45}, \Utabref{tab:testsetup_cem_wc50}, \Utabref{tab:testsetup_cem_wc55} und \Utabref{tab:testsetup_cem_wc60} zu entnehmen.
%
The following laboratory tests were carried out for \UtsCemShort{}. The associated tests and testing equipment, please find in \Utabref{tab:testsetup_cem_wc40}, \Utabref{tab:testsetup_cem_wc45}, \Utabref{tab:testsetup_cem_wc50}, \Utabref{tab:testsetup_cem_wc55} and \Utabref{tab:testsetup_cem_wc60}.

\begin{itemize}
	\item Environment temperature (ENV)
	\item Mixture composing procedure (MIX)
	\item Fresh paste density (FPD)
	\item Sampling procedure (SMP)
	\item Specimen temperature (TEM)
	\item Ultrasonic pulse transmission tests (UTT)
	\item Ultrasonic measuring distance (UMD)
	\item Solid specimen density (SSD)
	\item Specimen archiving (ARC)
\end{itemize}

%Für die Referenztests der Testserien fünf, sechs und sieben wurden aufgrund der Natur des Testmaterials eine von den oben aufgelisteten Prozeduren abweichende Versuchsdurchführung gewählt. Die dafür verwendeten Versuchsgeräte sind in \Utabrefonline{tab:testsetup_ref} dargestellt.
%
\noindent Due to the nature of the testing material, a workflow different from the one shown above was chosen for the reference tests in \UtsAirShort{}, \UtsWaterShort{} and \UtsAlucylShort{}. The differences are mainly related to the measurement of the specimen density, temperature, and specimen preparation. The associated tests and testing equipment, please find in \Utabref{tab:testsetup_ref}.

\begin{itemize}
	\item \UtsAirName{}
	\begin{itemize}
		\item Environment temperature and humidity (ENV2)
		\item Sampling procedure (SMP2)
		\item Ultrasonic pulse transmission tests (UTT)
		\item Ultrasonic measuring distance (UMD2)
	\end{itemize}
	\item \UtsWaterName{}
	\begin{itemize}
		\item Environment temperature and humidity (ENV2)
		\item Sampling procedure (SMP3)
		\item Ultrasonic pulse transmission tests (UTT)
		\item Ultrasonic measuring distance (UMD2)
	\end{itemize}
	\item \UtsAlucylName{}
	\begin{itemize}
		\item Environment temperature and humidity (ENV2)
		\item Sampling procedure (SMP4)
		\item Ultrasonic pulse transmission tests (UTT2)
		\item Ultrasonic measuring distance (UMD3)
		\item Solid specimen density (SSD2)
		\item Specimen archiving (ARC2)
	\end{itemize}
\end{itemize}

% Environment temperature (ENV)
\paragraph{Environment temperature (ENV):}
%Die Umgebungstemperatur wurde vor dem Herstellen der Mischungen vom Temperaturlogger, der an der Wand des Laborraumes angebracht ist, abgelesen und im Laborprotokoll vermerkt. Der Abstand der Versuchsanordnung der Ultraschall-Tests und dem Raumtemperaturlogger betrug ungefähr sechs Meter.
%An dieser Stelle ist zu erwähnen, dass die Messwerte von Temperaturlogger und der Raumtemperaturmessung mittels Thermoelementen (siehe Prozedur TEM, Kanal 4), um ungefähr $1{}^\circ$ Celsius voneinander abweichen.
%
Before preparing the mixtures, the environment temperature was read from the room temperature logger and recorded in the laboratory protocol. The temperature logger is attached to the wall of the laboratory, approximately six meters apart from the ultrasonic testing device. At this point, it is to note that the measured values from the temperature logger and the environment temperature measurement using thermocouples (see testing procedure TEM) differ by approximately $1{}^\circ$C.

\paragraph{Environment temperature and humidity (ENV2):}
%Für die Testserien 5, 6 und 7 wurde, von der Prozedur ENV abweichend, auch die Luftfeuchtigkeit vom Temperaturlogger abgelesen und im Laborprotokoll vermerkt.
%
For the reference tests in \UtsAirShort{}, \UtsWaterShort{} and \UtsAlucylShort{}, deviating from the testing procedure ENV, the humidity was also recorded.

\paragraph{Mixture composing procedure (MIX):}
%Der Mischvorgang besteht aus dem Einwiegen der Materialien und dem Mischen. Die Massen der Mischungskomponenten wurden dabei aus Tabelle \Utabref{tab:mixtures} entnommen und mit einer Genauigkeit von $\pm 0.5$ g eingewogen.
%Die Arbeitsschritte für die Herstellung der Mischungen sind nachfolgend aufgelistet.
%
The mixture composing procedure consists of weighing the mixture components and mixing. The masses of the mixture components were taken from \Utabref{tab:mixtures} and weighed using a digital balance with an accuracy of $\pm0.5$ g. The individual steps for producing the mixtures are listed below.

\begin{enumerate}
	\item Weigh mixture components (cement, water) according to the recipe
	\item Prepare mixer
	\item Pour cement in mixer bowl
	\item Add water to the cement and start counter-clock
	\item Mix for about 60 s
	\item 30 s scratching debris from the wall of the mixer bowl with a metal spoon
	\item Mix for about 90 s
\end{enumerate}

\paragraph{Fresh paste density test (FPD):}
%Die gravimetrische Bestimmung der Dichte des frischen Zementleims erfolgte direkt nach dem Herstellen der Mischungen und vor dem Einbau in die Schalungen des Ultraschall-Testgeräts. Dafür wurde ein Messbecher mit einem Volumen von $1000 cm^3$ und eine Digitalwaage verwendet. Hier ist zu bemerken, dass dieser Versuch nicht bei allen Versuchsdurchläufen der \UtsCemShort{} durchgeführt wurde.
%Die einzelnen Schritte des Versuchsablaufs sind nachfolgend aufgelistet.
%
The gravimetric determination of the density of the fresh cement paste was carried out directly after preparing the mixtures and before loading the moulds of the ultrasonic testing device. For this purpose, a graduated beaker and a digital balance were used. The weights were measured with an accuracy of $\pm0.1$ g (see \Utabref{tab:devaccuracy}, \verb*|d26|). It should be noted that this test was not carried out in all test runs of \UtsCemShort{} and is therefore not available from all datasets. The individual steps of the testing procedure are listed below.

\begin{enumerate}
	\item Moist inner surface of graduated beaker using a wet towel
	\item Pour paste in beaker, fill beaker to approx. half height
	\item Shake beaker for approx. 10 sec (vertical movements)
	\item Pour paste in beaker, fill to top edge
	\item Shake beaker for approx. 10 sec (vertical movements)
	\item Assure that beaker is fully filled (plus 2-3 mm over the top edge)
	\item Scrape off excess material along the beaker edge with a trowel
	\item Tare balance
	\item Measure gross weight (beaker plus paste)
\end{enumerate}

\paragraph{Sampling procedure (SMP):}\label{testproc:smp}
%Die Herstellung der Probekörper setzt sich aus der Vorbereitung der Schalungen des Ultraschall-Versuchsgeräts, dem Befüllen der Schalungen und dem Platzieren der Thermoelemente für die Temperaturmessung zusammen.
%
The sampling of the test specimens consists of preparing the moulds of the ultrasonic testing device, loading the moulds with the cement paste, compacting the paste and placing the thermocouples for the specimen temperature measurement.

%Da die Ultraschall-Kontaktprüfköpfe in den Acrylglas-Platten beweglich gelagert sind, befindet sich zwischen Prüfkopf und Acrylglas-Platte ein schmaler Ringspalt. Um zu verhindern, das der Zementleim in diesen Ringspalt eindringt, wurde dieser vor dem Zusammenbau der Schalungen mit einem Klebeband aus Polyimid (Dicke 0.04 mm, Breite 50 mm) überklebt. Die Klebefolie wurde dabei vertikal über die gesamte Höhe der Acrylglas-Platte aufgezogen. Um eine einwandfreie verklebung zu gewährleisten wurden vor dem Aufziehen der Folie der Bereich der Verklebung von jeglicher Verschmutzung befreit. Die Folie wurde dabei so aufgezogen, dass sich keine Luftblasen zwischen der Folie und der Oberfläche des Kontaktprüfkopfes befanden. Die Klebefolie wurde erneuert, sobald im Bereich des Kontaktprüfkopfes Beschädigungen an der Folie festzustellen waren.
%
Since the ultrasonic contact probes are movably mounted in the moulds, a narrow annular gap ($\approx 0.5$~mm width) exists between the probe and the mould's acrylic glass panel. This gap was covered with adhesive polyimide film tape (see \Utabref{tab:auxiliarymaterials}, \verb*|m7|) to prevent the cement paste from penetrating the gap. Before applying the tape, the bonding area was cleaned of dirt to ensure proper bonding. Then, the tape was applied vertically over the entire height of the acrylic glass panels, making sure to avoid air bubbles between the tape and the contact probe's surface. Furthermore, the tape was replaced on visible damages in the surface areas of the ultrasonic contact probes.

%Vor dem Zusammenbau der Schalungen wurde der vom Probenmaterial benetzte Bereich der Schalungen mit einem Trennmittel bestrichen. Dafür wurde handelsübliches Maiskeimöl verwendet. Der Bereich der Ultraschall-Kontaktprüfköpfe wurde dabei ausgespart oder gegebenenfalls mit Ethanol und einem Papierhandtuch gereinigt.
%
Before assembling the moulds, the mould's surface wetted by the cement paste was coated with a release agent made of ordinary corn germ oil (see \Utabref{tab:auxiliarymaterials}, \verb*|m6|). The surface area of the ultrasonic contact probes was left out or, if necessary, cleaned with ethanol and a paper towel.

%Während des Befüllens der Schalungen erfolgten zwei Verdichtungsvorgänge. Diese erfolgten durch vertikales Schütteln der Schalung. Dafür wurde die Schalung an einer Seite, etwa 3 bis 4 Zentimeter hoch, angehoben und wieder fallen gelassen. Dieser Vorgang wurde in etwa 10 Mal innerhalb von 10 Sekunden wiederholt. Durch das Verdichten wird verhindert, dass sich größere Luftblasen im Bereich zwischen Aktivator und Sensor befinden.
%
Two compaction processes were carried out while loading the moulds by vertically shaking them. Thereby, the mould was lifted on one side by about three to four centimetres and dropped again. The compaction prevents considerably large air bubbles from remaining in the space between the activator and the sensor (ultrasonic contact probes).

%Die verwendeten Schalungen sind in Abbildung \Ufigref{fig:uptm_moulds} dargestellt. Eine Illustration zur Platzierung der Thermoelemente ist in Abbildung \Ufigref{fig:uptm_thermo} zu sehen.
%Die einzelnen Schritte zur Herstellung der Probekörper sind nachfolgend aufgelistet.
%
The different mould configurations, please find in \Ufigref{fig:uptm_moulds}. The thermocouple placement is illustrated in \Ufigref{fig:uptm_thermo}. The individual steps of the sampling procedure are listed below.

\begin{enumerate}
	\item Ensure that the gap between the ultrasound contact probes and the acrylic glass panels is covered properly with polyimide film tape.
	\item Apply release agent on surfaces of mould M1 and mould M2.
	\item If necessary, remove the release agent from surface areas of the contact probes.
	\item Assemble mould M1 and mould M2.
	\item Pour the cement paste into mould M1. Fill up to approximately half the height of the mould.
	\item Repeat step 5 for mould M2.
	\item Shake mould M1 for approx. 10 sec (vertical movements).
	\item Repeat step 7 for mould M2.
	\item Pour the paste into mould M1, fill up to approx. 2.5 cm below the top edge of the mould.
	\item Repeat step 9 for mould M2.
	\item Shake mould M1 for approx. 10 sec (vertical movements).
	\item Repeat step 11 for mould M2.
	\item Cover mould M1 with cover strips. See note below.
	\item Repeat step 13 for mould M2.
	\item Place thermocouples as explained in testing procedure TEM.
\end{enumerate}

\noindent The sequential order of the cover strips is identical to the spacers depicted in the cross sections in \Ufigref{fig:uptm_moulds}. In the Mould-70a configuration, cling film was used instead of cover strips to prevent the specimen from drying out during the test.

\paragraph{Sampling procedure 2 (SMP2):}
%Die Probenvorbereitung für \UtsAirName{} waren keine besonderes Prozedere erforderlich. Hier wurde nur darauf geachtet, dass sich keine Objekte zwischen Aktivator und Sensor in den Schalungen des Ultraschall-Versuchsgeräts befinden. Da
%
No special procedures were used to prepare the test specimen for the ultrasound tests in \UtsAirName{}. It is worth noting that the ultrasonic contact probes were not covered with polyimide film tape for this sampling procedure.

\paragraph{Sampling procedure 3 (SMP3):}
%Da die Abstandhalter in Abbildung \Ufigref{fig:uptm_moulds} nicht ausreichend wasserdicht sind, wurde das Wasser in zwei Gummiballoons abgefüllt, die nachfolgend zwischen Aktivator und Sensor beider Schalungen plaziert wurden.
%Diese Konfiguration wurde für alle Messdistanzen $D = (25, 50, 70, 90)$ Millimeter verwendet. Bei der Messdistanz von $D = 90$ Millimeter war zu beobachten, dass die Oberfläche der Sensoren gerade noch von den Ballons abgedeckt werden konnte. Aus diesem Grund wurden die Ultraschall-Tests mit der Messdistanz $D = 90$ Millimeter mit einer etwas größeren Wassermenge in den Balloons wiederholt. Dieser Umstand zeigt sich in weiterer Folge in der zusätzlich vorhandenen Wiederholungsnummer der Datensatzbezeichnungen.
%Für diese Prozedur wurden keine Abstandhalter verwendet und die Kontaktprüfköpfe waren nicht mit Polyimid-Folie überklebt.
%
Since the spacers shown in \Ufigref{fig:uptm_moulds} are not sufficiently waterproof, the water used for the ultrasound tests in \UtsWaterShort{} was filled into air balloons (see \Utabref{tab:auxiliarymaterials}, \verb*|m9|), which were subsequently placed between the activator and the sensor of both moulds. The same balloons were used for all ultrasonic measuring distances. For the distance $D = 90$ mm, it was observed that the balloons hardly covered the contact probe's surface. For this reason, water was added to the balloons, and the tests were repeated. These additional test turns are reflected in the turn number added to the end of the data set designations. This sampling procedure was always carried out without using spacers and covering the contact probes' surfaces with polyimide film tape.

\paragraph{Sampling procedure 4 (SMP4):}
%Um einen flächigen Kraftschluss zwischen Aluminium-Zylinder, Aktivator und Sensor zu gewährleisten, wurde auf die Oberflächen von Aktivator und Sensor eine sehr dünne Schicht Fett aufgetragen. Danach wurde der Aluminium-Zylinder direkt dazwischen geklemmt. Die Dicke der Fettschicht, konnte bei diese Vorgangsweise nicht näher bestimmt werden.
%
In order to ensure a flat frictional connection between the aluminium cylinder and the contact probes, a skinny layer of grease (see \Utabref{tab:auxiliarymaterials}, \verb*|m10|) was applied to the contact probe's surfaces. The aluminium cylinder was then clamped directly between the contact probes, which were not covered with the polyimide film tape.

\paragraph{Specimen temperature (TEM):}\label{testproc:tem}
%Die Temperatur der Probekörper (Hydratationstemperatur des Zementleims) wurde mittels Thermoelementen gemessen. Das Messprinzip basiert auf dem thermoelektrischen Effekt eines Leiterpaares, dass aus unterschiedlichen Metallen besteht.
%Für die Messung wurden drei Thermoelemente T1, T2 und T3 nach dem Befüllen der Schalungen (siehe Sampling-Prozedur SMP) von oben in den noch weichen Zementleim eingebracht. Die Temperaturmessung erfolgte dabei immer in Schalung I (specimen II). Zusätzlich wurde die Umgebungstemperatur gemessen. Dafür wurde ein weiteres Thermoelement T4 direkt neben Schalung II plaziert. Die Plazierung der Theroelemente ist in Abbildung \Ufigref{fig:uptm_thermo} illustriert.
%
The hydration temperature of the cement paste was measured using thermocouple probes. Before the measurement, three thermocouple wires T1, T2 and T3 were inserted from above into the still soft cement paste after loading the moulds as described in sampling procedure SMP. The hydration temperature was always measured in mould M2 (specimen II). In addition, the environment temperature was measured by placing the thermocouple wire T4 near mould M2. Please find the thermocouple wire's proper placement in \Ufigref{fig:uptm_thermo}. The individual preparation steps for the temperature measurement are listed below.

\begin{enumerate}
	\item Strip ends of thermocouples, approximately two centimetres long.
	\item Twist both strands together and bend them over, approximately one centimetre long.
	\item Repeat the first two steps for all thermocouple wires (T1, T2, T3, T4).
	\item Place thermocouple T1 in the centre of the specimen in mould M2.
	\item Place thermocouple T2 on the side panel of mould M2, next to the sensor, vertically centred to the specimens height.
	\item Place thermocouple T3 on the mid of the lateral surface of the spacer of mould M2, vertically centred to the specimens height.
	\item Place thermocouple T4 outside but right next to mould M2.
\end{enumerate}

%Hier ist zu erwähnen, dass die Schritte 1 bis 3 immer vor dem Herstellen der Mischungen und die Schritte 4 bis 7 immer nach dem Einbau der Proben in das Ultraschall-Testgerät ausgeführt wurden. Damit war es möglich, die benötigte Zeit für den Einbau der Proben in das Ultraschall-Testgerät so kurz wie möglich zu halten und mit dem Ultraschall-Test so früh wie möglich zu beginnen. Die Temperaturaufzeichnung erfolgte automatisiert und zeitgleich mit der Aufzeichnung der Ultraschall-Signale. Die einzelnen Schritte für die Vorbereitung der Temperaturmessung miitels Thermoelementen sind nachfolgend aufgelistet.
%
\noindent Steps 1 to 3 were always carried out before preparing the cement paste mixtures, and steps 4 to 7 were carried out after loading the cement paste into the moulds. Due to the division of the process steps, it was possible to keep the time between adding water to the cement and the beginning of the ultrasonic pulse transmission test as short as possible. The temperature recording was carried out automatically and simultaneously with the recording of the ultrasound signals. It has to be noted, that the specimen temperature test was not carried out in all test runs and is therefore not included in all datasets.

\paragraph{Ultrasonic pulse transmission test (UTT):}
%Direkt nach dem Einbau des Zementleims in die beiden Schalungen, wurde der Ultraschall-Puls Transmissionstest durchgeführt. Dafür wurde zuerst die Steuerungssoftware am Messrechner gestartet und die Konfiguration der Einstellungen vorgenommen (siehe auch \Usubsecref{subsec:testing_devices}).
%Danach wurde der automatisierte Testlauf mittels Steuerungssoftware angestoßen. Die Ultraschall-Tests wurden dabei immer als Zweikanal-Tests durchgeführt.
%Nach dem Ende des Testlaufs wurden die erhärteten Probekörper aus den beiden Schalungen ausgebaut und weiteren Versuchen unterzogen. Die einzelnen Schritte zur Durchführung der Ultraschall-Puls Transmissions-Tests sind nachfolgend aufgelistet.
%
Immediately after loading the two moulds and placing the thermocouples, the ultrasonic pulse transmission test was performed. First, the test control and data recording software was started on the measuring computer and the test settings were configured as described in \Usubsecref{subsec:testing_devices}. Second, the automated test run was initiated manually on the control software. After the end of the test (24 hours), the hardened specimen were removed from both moulds and subjected to further tests. The individual steps for carrying out the ultrasonic pulse transmission tests are listed below.

\begin{enumerate}
	\item Check assembly of the testing device (moulds, cables, thermocouple wires).
	\item Assure that the cables between the pulse generator and actuators and the cables between the oscilloscope and sensors are not close to each other. See also note below.
	\item Start software on the measuring computer, configure the test settings and the time elapsed between adding water to the cement and the test initiation. See also sampling procedure SMP.
	\item Initiate the test.
	\item Wait for the test to end.
	\item Remove the specimen from the moulds by disassembling them.
	\item Clean the moulds.
\end{enumerate}

\noindent Note to step 2: The BNC signal cables used are shielded. However, preceding tests using different cable placements showed that the inductive interference caused by the high-voltage pulse excitation was considerably smaller when the cables were not too close to each other.

\paragraph{Ultrasonic pulse transmission test 2 (UTT2):}
%Da nur ein Aluminiumzylinder zur Verfügung stand, wurden die Ultraschall-Tests für die \UtsAlucylShort{} als Einkanal-Tests durchgeführt. Im ersten Schritt wurden alle Versuche mit den Sensoren mit longitudinaler Charakeristik (M1) und in einem zweiten Schritt nochmals mit den Sensoren mit transversaler Charakeristik (M2) ausgeführt.
%Die Prozedur wurde dabei sinngemäß, wie in der Testprozedur UTT beschrieben, ausgeführt. Die Messdaten beider Kanäle wurden danach zusammengeführt, sodass die selbe Datenstruktur wie beim Zweikanal-Test entsteht.
%
Since only one aluminium cylinder was available, the ultrasound tests in \UtsAlucylShort{} were carried out as single-channel tests. First, all tests were carried out using the longitudinal characteristics activator and sensor in mould M1. Second, all tests were repeated using the transverse characteristics activator and sensor in mould M2.
For both test runs, the procedure was the same as described in testing procedure UTT. Finally, the measurement data from both test runs were merged to construct the same data structure as returned by a two-channel test.

\paragraph{Ultrasonic measuring distance (UMD):}
%Nachdem entnehmen der erhärteten Probekörper aus Zementleim aus den Schalungen wurde die Ultraschall-Messdistanz $D$ zwischen den Kontaktprüfköpfen für beide Probekörper getrennt bestimmt.
%Aufgrund der Bauweise des Schalungen ragen die Kontaktprüfköpfe circa $0.5$ Millimeter aus der Oberfläche der Acrylglas-Schalung hervor und hinterlassen in den erhärteten Probekörpern flache Mulden. Deshalb war eine direkte Distanzbestimmung mit dem Messschieber nicht möglich.
%
After removing the hardened cement paste specimen from the moulds, the ultrasonic measuring distance $D$ was determined separately for each specimen. Due to the design of the moulds, the ultrasonic contact probes protrude approximately 0.5~mm from the surface of the acrylic glass panels and leave shallow depressions in the hardened test specimens. Therefore, it was impossible to determine the distance directly.

%Für die genaue Bestimmung der Messdistanz wurden deshalb als Hilfsmittel zwei Unterlegscheiben aus Stahl verwendet. Diese wurden, vor dem Anlegen des Messchiebers, in die Mulden auf beiden Seiten des Probekörpers eingelegt. Nach dem Messen der Gesamtdistanz mit dem Messschieber (Probekörper plus zwei mal Unterlegscheibe) wurde die Dicke der beiden Unterlegscheiben von der Gesamtdistanz subtrahiert. Die Distanzmessung wurde dabei mit einer Benauigkeit von $\pm 0.01$ Millimeter durchgeführt. Die einzelnen Schritte der Bestimmung der Ultraschll-Messdistanz sind nachfolgend aufgelistet.
%
However, as aid, two steel washers were used to determine the distance. These were placed in the shallow depressions (hutches) on both sides of the specimen before measuring the distance. After measuring the total distance with the sliding calliper (specimen plus two washers), the thickness of the two washers was subtracted. The distance measurement was carried out using a digital sliding calliper and an accuracy of $\pm0.01$~mm (see \Utabref{tab:devaccuracy}, \verb*|d27|). The individual steps for determining the ultrasonic measuring distance are listed below.

\begin{enumerate}
	\item Apply steel washer in hutches on both sides of the specimen.
	\item Measure total distance using a sliding calliper (thickness of specimen plus thickness of two washers).
	\item Subtract the thickness of two washers from the total distance.
\end{enumerate}

\paragraph{Ultrasonic measuring distance 2 (UMD2):}
%Die Bestimmung der Ultraschall-Messdistanz $D$ erfolgte für \UtsAirShort{} und \UtsWaterShort{} mittels Distanzmessung mit einem Messschieber. Da die Ultraschall-Kontaktprüfköpfe in den Schalungen beweglich gelagert sind, war eine genaue Messung der Distanz nicht möglich. Deshalb wurde hier der Abstand zwischen den Acrylglas-Platten der Schalungen bestimmt.
%
For \UtsAirShort{} and \UtsWaterShort{}, the ultrasonic measuring distance $D$ was determined by measuring the distance with a digital sliding calliper. Since the activator and the sensor are mounted movably in the moulds, an exact and stable measurement of the ultrasonic measuring distance was impossible. Instead, the inner distance between the acrylic glass panels of the moulds was determined with an accuracy of $\pm0.01$~mm (see \Utabref{tab:devaccuracy}, \verb*|d27|).

%Da Luft keinen Druck auf die Sensoren ausgeübt, ragen diese bis zu zwei Millimeter aus den Acrylglas-Platten hervor. Für die Referenztests mit Wasser hingegen ergibt sich eine ähnliche Situation wie bei Zementleim. Die Sensoren ragen dann aufgrund des Wasserdrucks nur etwa 0.5 Millimeter aus den Acrylglas-Platten hervor. Aus diesem Grund konnte die Ultraschall-Messdistanz nur grob anhand des Abstandes zwischen Acrylglas-Platten abgeschätzt werden.
%
Since air does not exert any pressure on the ultrasonic contact probes, they protrude up to 1.5~mm from the surface of the acrylic glass panels. For the reference tests with water, however, a similar situation arises as with cement paste. Due to the water pressure, the probes only protrude about 0.5~mm from the surface of the acrylic glass panels. For this reason, the ultrasonic measuring distance could only be roughly estimated on the basis of the distance between acrylic glass panels and the estimated protrusion.

\paragraph{Ultrasonic measuring distance 3 (UMD3):}
%Die Bestimmung der Ultraschall-Messdistanz $D$ erfolgte beim Aluminium-Zylinder mit einem Messschieber durch Messung der Distanz zwischen den planparallelel Flächen des Zylinders. Die Distanz wurde dabei mit einer Genauigkeit von $\pm 0.01$ mm gemessen.
%
For the tests in \UtsAlucylShort{}, the ultrasonic measuring distance $D$ was determined by the distance between the plane-parallel bottom and head surface of the cylinder. The distance measurement was carried out with a digital sliding calliper and an accuracy of $\pm0.01$~mm (see \Utabref{tab:devaccuracy}, \verb*|d27|).

\paragraph{Solid specimen density (SSD):}
%Die Bestimmung der Dichte der Probekörper aus erhärtetem Zementleim erfolgte direkt nach der Bestimmung der Messdistanz. Diese erfolgte dabei nach dem archimedischen Prinzip mittels Tauchwägung. Die Oberfläche der Probekörper wurde vor dem Eintauchen in das Wasserbad weder beschichtet noch anderweitig behandelt.
%
The density of the solid test specimens was determined directly after measuring the ultrasonic measuring distance. The density test was done by immersion weighing according to the Archimedean principle. The surface of the test specimens was neither coated nor treated in any other way before immersion in the water basin.

%Um eine mögliche Wasseraufnahme durch die Probekörper hintan zu halten, wurde die Aufenthaltsdauer der Probekörper unter Wasser mit circa $30$ Sekunden so kurz wie möglich gehalten. Es war zu beobachten, dass das Wasser von den Probekörpern nach der Entnahme aus dem Wasserbad abgeperlt ist. Dies ist höchstwahrscheinlich dem Trennmittel (Maiskeimöl) geschuldet, mit dem die Schalungen vor dem Einbau des Zementleims beschichtet wurden (siehe auch Sampling-Prozedur SMP).
%
In order to prevent the uncoated specimen from absorbing water, the immersion time was kept as short as possible at around 30 seconds. The water was observed to roll off the specimens after removing them from the water basin. That is most likely due to the release agent used to coat the moulds during the sampling procedure SMP.

%Das Gewicht der Probekörper wurde mit einer Digitalwaage bestimmt und mit einer Genauigkeit von 0.01 g abgelesen. Die Information, welche Waage verwendet wurde, ist in den Datensätzen enthalten. Die einzelnen Schritte der Bestimmung der Festkörperdichte nach dem archimedischen Prinzip sind nachfolgend aufgelistet.
%
The weight of the specimens was determined using digital scales with an accuracy of $\pm0.01$ g (see \Utabref{tab:devaccuracy}, \verb*|d25|) or $\pm0.1$ g (see \Utabref{tab:devaccuracy}, \verb*|d24|). The information, which scale was used is included in the datasets' metadata. The individual steps of determining the solid specimen density are listed below.

\begin{enumerate}
	\item Remove loose parts from specimen edges.
	\item Tare balance.
	\item Weigh dry mass of the specimen.
	\item Lower the basket into the water container and attach it to the balance.
	\item Tare balance.
	\item Put the specimen on the basket, make sure that it is completely covered with water.
	\item Wait until air bubbles have disappeared from the specimen surface and it is hanging quietly in the water.
	\item Weigh floating mass of the specimen.
\end{enumerate}

\paragraph{Solid specimen density 2 (SSD2):}
%Die Dichte des Aluminium-Zylinders wurde gravimetrisch bestimmt. Aufgrund der exakten geometrischen Abmessungen wurde das Volumen aus den Zylinderabmessungen errechnet. Das Gewicht wurde mit einer Digitalwaage mit einer Genauigkeit von $\pm 0.01$ g gemessen.
%
In \UtsAlucylShort{} the density of the aluminium cylinder was determined gravimetrically. Due to the accurate geometric dimensions, the volume was calculated from the cylinder dimensions. These were measured with a digital sliding caliper and an accuracy of $\pm0.01$~mm (see \Utabref{tab:devaccuracy}, \verb*|d27|). The weight of the cylinder was measured with a digital balance at an accuracy of $\pm0.1$~g (see \Utabref{tab:devaccuracy}, \verb*|d26|).

\paragraph{Specimen archiving (ARC):}
%Am Schluss der gesamten Versuchsdurchführung stand die Archivierung der Probekörper aus erhärtetem Zementleim. Die Archivierung erfolgte aufgrund einer Richtlinie der Technischen Universität Graz zur Aufbewahrung von Proben aus wissenschaftlichen Versuchen. Des Weiteren bietet sich dadurch die Möglichkeit auch in Zukunft weitere Versuche an den Probeköpern durchzuführen. Die einzelnen Schritte der Archivierung sind nachfolgend aufgelistet.
%
At the test's end, the hardened cement paste specimens were archived. The archiving was carried out based on a guideline from Graz University of Technology for storing samples from scientific tests. That also offers the possibility of carrying out further tests on the test specimens in the future. The individual steps of the archiving procedure are listed below.

\begin{enumerate}
	\item Label the test specimen (specimen I and specimen II) with the assignment to the type of ultrasonic sensor types (`P' or `S'). The `P' denotes the primary channel 1 with compression wave sensors (longitudinal sensor characteristic). The `S' denotes the secondary channel 2 with shear wave sensors (transverse sensor characteristic).
	\item Place both specimens of the ultrasonic test (`P' and `S') in one plastic bag and seal it with tape.
	\item Label the plastic bag with the sample number (data set designation), the name of the operator and the start date of the experiment.
	\item Stow plastic bags with specimens in indoor storage.
\end{enumerate}

\paragraph{Specimen archiving 2 (ARC2):}
%Die Archivierung des Aluminium-Zylinders wurde, abweichend von der Prozedur ARC, nur in einen Plastikbeutel gepackt und mit der Materialbezeichnung, dem Gewicht und den Abmessungen beschriftet. Der Zylinder wurde ebenfalls für eine spätere Verwendung aufbewahrt.
%
The aluminium cylinder used for the tests in \UtsAlucylShort{} was packed in a plastic bag and labelled with the material name, weight and dimensions. The cylinder was also kept for later use.

% tables, test series 1
\begin{landscape}
	% test setup, cement paste, part 1/5
	\begin{table}[ht]
		\centering
		\begin{tabular}{l l c c c c c c c c c c}
			\toprule
			Data set    & Mixture & \multicolumn{9}{c}{Tests, Devices} \\ \cmidrule(lr){4-12}
			Designation & XID     & AC & ENV & MIX & FPD & SMP & UTT${}^{(1)}$ & UTT${}^{(2)}$ & TEM & UMD & SSD \\ \midrule
			\verb*|ts1_wc040_d25_1| & \verb|WC040_D25_B1| &   $\sim$     & \verb|d33| & \verb|g1| & \verb|x|  & \verb|d20| & \verb|g2| & \verb|g3| & \verb|g5| & \verb|g4| & \verb|d24| \\
			\verb*|ts1_wc040_d25_2| & \verb|WC040_D25_B1| &   $\sim$     & \verb|d33| & \verb|g1| & \verb|x|  & \verb|d20| & \verb|g2| & \verb|g3| & \verb|g5| & \verb|g4| & \verb|d25| \\
			\verb*|ts1_wc040_d25_3| & \verb|WC040_D25_B1| &   $\sim$     & \verb|d33| & \verb|g1| & \verb|x|  & \verb|d20| & \verb|g2| & \verb|g3| & \verb|g5| & \verb|g4| & \verb|d25| \\
			\verb*|ts1_wc040_d25_4| & \verb|WC040_D25_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|x|  & \verb|d20| & \verb|g2| & \verb|g3| & \verb|g5| & \verb|g4| & \verb|d24| \\
			\verb*|ts1_wc040_d25_5| & \verb|WC040_D25_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|x|  & \verb|d20| & \verb|g2| & \verb|g3| & \verb|g5| & \verb|g4| & \verb|d24| \\
			\verb*|ts1_wc040_d25_6| & \verb|WC040_D25_B2| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|x|  & \verb|d20| & \verb|g2| & \verb|g3| & \verb|g5| & \verb|g4| & \verb|d24| \\ \midrule
			\verb*|ts1_wc040_d50_1| & \verb|WC040_D50_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|x|  & \verb|d21| & \verb|g2| & \verb|g3| & \verb|g5| & \verb|g4| & \verb|d25| \\
			\verb*|ts1_wc040_d50_2| & \verb|WC040_D50_B1| &    $\sim$    & \verb|d33| & \verb|g1| & \verb|g7| & \verb|d21| & \verb|g2| & \verb|g3| & \verb|g5| & \verb|g4| & \verb|d25| \\
			\verb*|ts1_wc040_d50_3| & \verb|WC040_D50_B1| &    $\sim$    & \verb|d33| & \verb|g1| & \verb|g7| & \verb|d21| & \verb|g2| & \verb|g3| & \verb|g5| & \verb|g4| & \verb|d25| \\
			\verb*|ts1_wc040_d50_4| & \verb|WC040_D50_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|x|  & \verb|d21| & \verb|g2| & \verb|g3| & \verb|g5| & \verb|g4| & \verb|d24| \\
			\verb*|ts1_wc040_d50_5| & \verb|WC040_D50_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|g7| & \verb|d21| & \verb|g2| & \verb|g3| & \verb|g5| & \verb|g4| & \verb|d24| \\
			\verb*|ts1_wc040_d50_6| & \verb|WC040_D50_B2| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|g7| & \verb|d21| & \verb|g2| & \verb|g3| & \verb|g5| & \verb|g4| & \verb|d24| \\ \midrule
			\verb*|ts1_wc040_d70_1| & \verb|WC040_D70_B1| &    $\sim$    & \verb|d33| & \verb|g1| & \verb|g7| & \verb|d22| & \verb|g2| & \verb|g3| & \verb|g5| & \verb|g4| & \verb|d25| \\
			\verb*|ts1_wc040_d70_2| & \verb|WC040_D70_B1| &    $\sim$    & \verb|d33| & \verb|g1| & \verb|g7| & \verb|d22| & \verb|g2| & \verb|g3| & \verb|g5| & \verb|g4| & \verb|d25| \\
			\verb*|ts1_wc040_d70_3| & \verb|WC040_D70_B1| &    $\sim$    & \verb|d33| & \verb|g1| & \verb|g7| & \verb|d22| & \verb|g2| & \verb|g3| & \verb|g5| & \verb|g4| & \verb|d25| \\
			\verb*|ts1_wc040_d70_4| & \verb|WC040_D70_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|g7| & \verb|d23| & \verb|g2| & \verb|g3| & \verb|g5| & \verb|g4| & \verb|d24| \\
			\verb*|ts1_wc040_d70_5| & \verb|WC040_D70_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|g7| & \verb|d23| & \verb|g2| & \verb|g3| & \verb|g5| & \verb|g4| & \verb|d24| \\
			\verb*|ts1_wc040_d70_6| & \verb|WC040_D70_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|g7| & \verb|d23| & \verb|g2| & \verb|g3| & \verb|g5| & \verb|g4| & \verb|d24| \\ \bottomrule
		\end{tabular}
		\caption{Table of testing procedures and test equipment related to the data sets of \UtsCemShort{}. Part 1 of 5. Legend: AC~\ldots ambient condition status ($\checkmark : T = +20 \pm1.5^{\circ}C$, $\sim$: conditions deviating from standard conditions); UTT${}^{(1)}$, UTT${}^{(2)}$~\ldots ultrasonic pulse transmission tests (the superscript denotes the channel number); \texttt{x}~\ldots test not available.}\label{tab:testsetup_cem_wc40}
	\end{table}
	
	% test setup, cement paste, part 2/5
	\begin{table}[ht]
		\centering
		\begin{tabular}{l l c c c c c c c c c c}
			\toprule
			Data set    & Mixture & \multicolumn{9}{c}{Tests, Devices} \\ \cmidrule(lr){4-12}
			Designation & XID     & AC & ENV & MIX & FPD & SMP & UTT${}^{(1)}$ & UTT${}^{(2)}$ & TEM & UMD & SSD \\ \midrule
			\verb*|ts1_wc045_d25_1| & \verb|WC045_D25_B1| &    $\sim$    & \verb|d33| & \verb|g1| & \verb|x|  & \verb|d20| & \verb|g2| & \verb|g3| & \verb|g5| & \verb|g4| & \verb|d24| \\
			\verb*|ts1_wc045_d25_2| & \verb|WC045_D25_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|x|  & \verb|d20| & \verb|g2| & \verb|g3| & \verb|g5| & \verb|g4| & \verb|d24| \\
			\verb*|ts1_wc045_d25_3| & \verb|WC045_D25_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|x|  & \verb|d20| & \verb|g2| & \verb|g3| & \verb|g5| & \verb|g4| & \verb|d25| \\
			\verb*|ts1_wc045_d25_4| & \verb|WC045_D25_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|x|  & \verb|d20| & \verb|g2| & \verb|g3| & \verb|g5| & \verb|g4| & \verb|d25| \\
			\verb*|ts1_wc045_d25_5| & \verb|WC045_D25_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|x|  & \verb|d20| & \verb|g2| & \verb|g3| & \verb|g5| & \verb|g4| & \verb|d24| \\
			\verb*|ts1_wc045_d25_6| & \verb|WC045_D25_B2| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|x|  & \verb|d20| & \verb|g2| & \verb|g3| & \verb|g5| & \verb|g4| & \verb|d24| \\ \midrule
			\verb*|ts1_wc045_d50_1| & \verb|WC045_D50_B1| &    $\sim$    & \verb|d33| & \verb|g1| & \verb|g7| & \verb|d21| & \verb|g2| & \verb|g3| & \verb|g5| & \verb|g4| & \verb|d24| \\
			\verb*|ts1_wc045_d50_2| & \verb|WC045_D50_B1| &    $\sim$    & \verb|d33| & \verb|g1| & \verb|g7| & \verb|d21| & \verb|g2| & \verb|g3| & \verb|g5| & \verb|g4| & \verb|d24| \\
			\verb*|ts1_wc045_d50_3| & \verb|WC045_D50_B1| &    $\sim$    & \verb|d33| & \verb|g1| & \verb|g7| & \verb|d21| & \verb|g2| & \verb|g3| & \verb|g5| & \verb|g4| & \verb|d25| \\
			\verb*|ts1_wc045_d50_4| & \verb|WC045_D50_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|x|  & \verb|d21| & \verb|g2| & \verb|g3| & \verb|g5| & \verb|g4| & \verb|d25| \\
			\verb*|ts1_wc045_d50_5| & \verb|WC045_D50_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|g7| & \verb|d21| & \verb|g2| & \verb|g3| & \verb|g5| & \verb|g4| & \verb|d24| \\
			\verb*|ts1_wc045_d50_6| & \verb|WC045_D50_B2| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|g7| & \verb|d21| & \verb|g2| & \verb|g3| & \verb|g5| & \verb|g4| & \verb|d24| \\ \midrule
			\verb*|ts1_wc045_d70_1| & \verb|WC045_D70_B1| &    $\sim$    & \verb|d33| & \verb|g1| & \verb|g7| & \verb|d22| & \verb|g2| & \verb|g3| & \verb|g5| & \verb|g4| & \verb|d24| \\
			\verb*|ts1_wc045_d70_2| & \verb|WC045_D70_B1| &    $\sim$    & \verb|d33| & \verb|g1| & \verb|g7| & \verb|d22| & \verb|g2| & \verb|g3| & \verb|g5| & \verb|g4| & \verb|d24| \\
			\verb*|ts1_wc045_d70_3| & \verb|WC045_D70_B1| &    $\sim$    & \verb|d33| & \verb|g1| & \verb|g7| & \verb|d22| & \verb|g2| & \verb|g3| & \verb|g5| & \verb|g4| & \verb|d24| \\
			\verb*|ts1_wc045_d70_4| & \verb|WC045_D70_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|g7| & \verb|d23| & \verb|g2| & \verb|g3| & \verb|g5| & \verb|g4| & \verb|d24| \\
			\verb*|ts1_wc045_d70_5| & \verb|WC045_D70_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|g7| & \verb|d23| & \verb|g2| & \verb|g3| & \verb|g5| & \verb|g4| & \verb|d24| \\
			\verb*|ts1_wc045_d70_6| & \verb|WC045_D70_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|g7| & \verb|d23| & \verb|g2| & \verb|g3| & \verb|g5| & \verb|g4| & \verb|d25| \\ \bottomrule
		\end{tabular}
		\caption{Table of testing procedures and test equipment related to the data sets of \UtsCemShort{}. Part 2 of 5. Legend: see \Utabref{tab:testsetup_cem_wc40}.}\label{tab:testsetup_cem_wc45}
	\end{table}
	
	% test setup, cement paste, part 3/5
	\begin{table}[ht]
		\centering
		\begin{tabular}{l l c c c c c c c c c c}
			\toprule
			Data set    & Mixture & \multicolumn{9}{c}{Tests, Devices} \\ \cmidrule(lr){4-12}
			Designation & XID     & AC & ENV & MIX & FPD & SMP & UTT${}^{(1)}$ & UTT${}^{(2)}$ & TEM & UMD & SSD \\ \midrule
			\verb*|ts1_wc050_d25_1| & \verb|WC050_D25_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|x|  & \verb|d20| & \verb|g2| & \verb|g3| & \verb|x|  & \verb|g4| & \verb|d24| \\
			\verb*|ts1_wc050_d25_2| & \verb|WC050_D25_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|x|  & \verb|d20| & \verb|g2| & \verb|g3| & \verb|x|  & \verb|g4| & \verb|d24| \\
			\verb*|ts1_wc050_d25_3| & \verb|WC050_D25_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|x|  & \verb|d20| & \verb|g2| & \verb|g3| & \verb|x|  & \verb|g4| & \verb|d24| \\
			\verb*|ts1_wc050_d25_4| & \verb|WC050_D25_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|x|  & \verb|d20| & \verb|g2| & \verb|g3| & \verb|g6| & \verb|g4| & \verb|d25| \\
			\verb*|ts1_wc050_d25_5| & \verb|WC050_D25_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|x|  & \verb|d20| & \verb|g2| & \verb|g3| & \verb|g5| & \verb|g4| & \verb|d25| \\
			\verb*|ts1_wc050_d25_6| & \verb|WC050_D25_B2| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|x|  & \verb|d20| & \verb|g2| & \verb|g3| & \verb|g5| & \verb|g4| & \verb|d24| \\ \midrule
			\verb*|ts1_wc050_d50_1| & \verb|WC050_D50_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|g7| & \verb|d21| & \verb|g2| & \verb|g3| & \verb|x|  & \verb|g4| & \verb|d24| \\
			\verb*|ts1_wc050_d50_2| & \verb|WC050_D50_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|g7| & \verb|d21| & \verb|g2| & \verb|g3| & \verb|x|  & \verb|g4| & \verb|d24| \\
			\verb*|ts1_wc050_d50_3| & \verb|WC050_D50_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|g7| & \verb|d21| & \verb|g2| & \verb|g3| & \verb|x|  & \verb|g4| & \verb|d24| \\
			\verb*|ts1_wc050_d50_4| & \verb|WC050_D50_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|g7| & \verb|d21| & \verb|g2| & \verb|g3| & \verb|g5| & \verb|g4| & \verb|d24| \\
			\verb*|ts1_wc050_d50_5| & \verb|WC050_D50_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|g7| & \verb|d21| & \verb|g2| & \verb|g3| & \verb|g5| & \verb|g4| & \verb|d24| \\
			\verb*|ts1_wc050_d50_6| & \verb|WC050_D50_B2| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|g7| & \verb|d21| & \verb|g2| & \verb|g3| & \verb|g5| & \verb|g4| & \verb|d24| \\ \midrule
			\verb*|ts1_wc050_d70_1| & \verb|WC050_D70_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|g7| & \verb|d22| & \verb|g2| & \verb|g3| & \verb|x|  & \verb|g4| & \verb|d24| \\
			\verb*|ts1_wc050_d70_2| & \verb|WC050_D70_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|g7| & \verb|d22| & \verb|g2| & \verb|g3| & \verb|x|  & \verb|g4| & \verb|d24| \\
			\verb*|ts1_wc050_d70_3| & \verb|WC050_D70_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|g7| & \verb|d22| & \verb|g2| & \verb|g3| & \verb|x|  & \verb|g4| & \verb|d25| \\
			\verb*|ts1_wc050_d70_4| & \verb|WC050_D70_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|g7| & \verb|d22| & \verb|g2| & \verb|g3| & \verb|g6| & \verb|g4| & \verb|d25| \\
			\verb*|ts1_wc050_d70_5| & \verb|WC050_D70_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|g7| & \verb|d23| & \verb|g2| & \verb|g3| & \verb|g5| & \verb|g4| & \verb|d24| \\
			\verb*|ts1_wc050_d70_6| & \verb|WC050_D70_B2| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|g7| & \verb|d23| & \verb|g2| & \verb|g3| & \verb|g5| & \verb|g4| & \verb|d24| \\ \bottomrule
		\end{tabular}
		\caption{Table of testing procedures and test equipment related to the data sets of \UtsCemShort{}. Part 3 of 5. Legend: see \Utabref{tab:testsetup_cem_wc40}.}\label{tab:testsetup_cem_wc50}
	\end{table}
	
	% test setup, cement paste, part 4/5
	\begin{table}[ht]
		\centering
		\begin{tabular}{l l c c c c c c c c c c}
			\toprule
			Data set    & Mixture & \multicolumn{9}{c}{Tests, Devices} \\ \cmidrule(lr){4-12}
			Designation & XID     & AC & ENV & MIX & FPD & SMP & UTT${}^{(1)}$ & UTT${}^{(2)}$ & TEM & UMD & SSD \\ \midrule
			\verb*|ts1_wc055_d25_1| & \verb|WC055_D25_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|x|  & \verb|d20| & \verb|g2| & \verb|g3| & \verb|x|  & \verb|g4| & \verb|d24| \\
			\verb*|ts1_wc055_d25_2| & \verb|WC055_D25_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|x|  & \verb|d20| & \verb|g2| & \verb|g3| & \verb|x|  & \verb|g4| & \verb|d24| \\
			\verb*|ts1_wc055_d25_3| & \verb|WC055_D25_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|x|  & \verb|d20| & \verb|g2| & \verb|g3| & \verb|x|  & \verb|g4| & \verb|d24| \\
			\verb*|ts1_wc055_d25_4| & \verb|WC055_D25_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|x|  & \verb|d20| & \verb|g2| & \verb|g3| & \verb|g6| & \verb|g4| & \verb|d24| \\
			\verb*|ts1_wc055_d25_5| & \verb|WC055_D25_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|x|  & \verb|d20| & \verb|g2| & \verb|g3| & \verb|g5| & \verb|g4| & \verb|d24| \\
			\verb*|ts1_wc055_d25_6| & \verb|WC055_D25_B2| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|x|  & \verb|d20| & \verb|g2| & \verb|g3| & \verb|g5| & \verb|g4| & \verb|d24| \\ \midrule
			\verb*|ts1_wc055_d50_1| & \verb|WC055_D50_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|x|  & \verb|d21| & \verb|g2| & \verb|g3| & \verb|x|  & \verb|g4| & \verb|d24| \\
			\verb*|ts1_wc055_d50_2| & \verb|WC055_D50_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|x|  & \verb|d21| & \verb|g2| & \verb|g3| & \verb|x|  & \verb|g4| & \verb|d24| \\
			\verb*|ts1_wc055_d50_3| & \verb|WC055_D50_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|x|  & \verb|d21| & \verb|g2| & \verb|g3| & \verb|x|  & \verb|g4| & \verb|d24| \\
			\verb*|ts1_wc055_d50_4| & \verb|WC055_D50_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|g7| & \verb|d21| & \verb|g2| & \verb|g3| & \verb|g5| & \verb|g4| & \verb|d25| \\
			\verb*|ts1_wc055_d50_5| & \verb|WC055_D50_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|g7| & \verb|d21| & \verb|g2| & \verb|g3| & \verb|g5| & \verb|g4| & \verb|d25| \\
			\verb*|ts1_wc055_d50_6| & \verb|WC055_D50_B2| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|g7| & \verb|d21| & \verb|g2| & \verb|g3| & \verb|g5| & \verb|g4| & \verb|d24| \\ \midrule
			\verb*|ts1_wc055_d70_1| & \verb|WC055_D70_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|x|  & \verb|d22| & \verb|g2| & \verb|g3| & \verb|x|  & \verb|g4| & \verb|d24| \\
			\verb*|ts1_wc055_d70_2| & \verb|WC055_D70_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|x|  & \verb|d22| & \verb|g2| & \verb|g3| & \verb|x|  & \verb|g4| & \verb|d24| \\
			\verb*|ts1_wc055_d70_3| & \verb|WC055_D70_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|x|  & \verb|d22| & \verb|g2| & \verb|g3| & \verb|x|  & \verb|g4| & \verb|d24| \\
			\verb*|ts1_wc055_d70_4| & \verb|WC055_D70_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|g7| & \verb|d22| & \verb|g2| & \verb|g3| & \verb|g5| & \verb|g4| & \verb|d25| \\
			\verb*|ts1_wc055_d70_5| & \verb|WC055_D70_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|g7| & \verb|d23| & \verb|g2| & \verb|g3| & \verb|g5| & \verb|g4| & \verb|d25| \\
			\verb*|ts1_wc055_d70_6| & \verb|WC055_D70_B2| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|g7| & \verb|d23| & \verb|g2| & \verb|g3| & \verb|g5| & \verb|g4| & \verb|d24| \\ \bottomrule
		\end{tabular}
		\caption{Table of testing procedures and test equipment related to the data sets of \UtsCemShort{}. Part 4 of 5. Legend: see \Utabref{tab:testsetup_cem_wc40}.}\label{tab:testsetup_cem_wc55}
	\end{table}
	
	% test setup, cement paste, part 5/5
	\begin{table}[ht]
		\centering
		\begin{tabular}{l l c c c c c c c c c c}
			\toprule
			Data set    & Mixture & \multicolumn{9}{c}{Tests, Devices} \\ \cmidrule(lr){4-12}
			Designation & XID     & AC & ENV & MIX & FPD & SMP & UTT${}^{(1)}$ & UTT${}^{(2)}$ & TEM & UMD & SSD \\ \midrule
			\verb*|ts1_wc060_d25_1| & \verb|WC060_D25_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|x|  & \verb|d20| & \verb|g2| & \verb|g3| & \verb|x|  & \verb|g4| & \verb|d24| \\
			\verb*|ts1_wc060_d25_2| & \verb|WC060_D25_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|x|  & \verb|d20| & \verb|g2| & \verb|g3| & \verb|x|  & \verb|g4| & \verb|d24| \\
			\verb*|ts1_wc060_d25_3| & \verb|WC060_D25_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|x|  & \verb|d20| & \verb|g2| & \verb|g3| & \verb|x|  & \verb|g4| & \verb|d24| \\
			\verb*|ts1_wc060_d25_4| & \verb|WC060_D25_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|x|  & \verb|d20| & \verb|g2| & \verb|g3| & \verb|g5| & \verb|g4| & \verb|d24| \\
			\verb*|ts1_wc060_d25_5| & \verb|WC060_D25_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|x|  & \verb|d20| & \verb|g2| & \verb|g3| & \verb|g5| & \verb|g4| & \verb|d25| \\
			\verb*|ts1_wc060_d25_6| & \verb|WC060_D25_B2| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|x|  & \verb|d20| & \verb|g2| & \verb|g3| & \verb|g5| & \verb|g4| & \verb|d25| \\ \midrule
			\verb*|ts1_wc060_d50_1| & \verb|WC060_D50_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|x|  & \verb|d21| & \verb|g2| & \verb|g3| & \verb|x|  & \verb|g4| & \verb|d24| \\
			\verb*|ts1_wc060_d50_2| & \verb|WC060_D50_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|x|  & \verb|d21| & \verb|g2| & \verb|g3| & \verb|x|  & \verb|g4| & \verb|d24| \\
			\verb*|ts1_wc060_d50_3| & \verb|WC060_D50_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|x|  & \verb|d21| & \verb|g2| & \verb|g3| & \verb|x|  & \verb|g4| & \verb|d24| \\
			\verb*|ts1_wc060_d50_4| & \verb|WC060_D50_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|g7| & \verb|d21| & \verb|g2| & \verb|g3| & \verb|g5| & \verb|g4| & \verb|d24| \\
			\verb*|ts1_wc060_d50_5| & \verb|WC060_D50_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|g7| & \verb|d21| & \verb|g2| & \verb|g3| & \verb|g5| & \verb|g4| & \verb|d25| \\
			\verb*|ts1_wc060_d50_6| & \verb|WC060_D50_B2| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|g7| & \verb|d21| & \verb|g2| & \verb|g3| & \verb|g5| & \verb|g4| & \verb|d25| \\ \midrule
			\verb*|ts1_wc060_d70_1| & \verb|WC060_D70_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|x|  & \verb|d22| & \verb|g2| & \verb|g3| & \verb|x|  & \verb|g4| & \verb|d24| \\
			\verb*|ts1_wc060_d70_2| & \verb|WC060_D70_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|x|  & \verb|d22| & \verb|g2| & \verb|g3| & \verb|x|  & \verb|g4| & \verb|d24| \\
			\verb*|ts1_wc060_d70_3| & \verb|WC060_D70_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|x|  & \verb|d22| & \verb|g2| & \verb|g3| & \verb|x|  & \verb|g4| & \verb|d24| \\
			\verb*|ts1_wc060_d70_4| & \verb|WC060_D70_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|g7| & \verb|d22| & \verb|g2| & \verb|g3| & \verb|g5| & \verb|g4| & \verb|d24| \\
			\verb*|ts1_wc060_d70_5| & \verb|WC060_D70_B1| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|g7| & \verb|d23| & \verb|g2| & \verb|g3| & \verb|g5| & \verb|g4| & \verb|d25| \\
			\verb*|ts1_wc060_d70_6| & \verb|WC060_D70_B2| & $\checkmark$ & \verb|d33| & \verb|g1| & \verb|g7| & \verb|d23| & \verb|g2| & \verb|g3| & \verb|g5| & \verb|g4| & \verb|d25| \\ \bottomrule
		\end{tabular}
		\caption{Table of testing procedures and test equipment related to the data sets of \UtsCemShort{}. Part 5 of 5. Legend: see \Utabref{tab:testsetup_cem_wc40}.}\label{tab:testsetup_cem_wc60}
	\end{table}

	% test setup, reference tests, air, water, aluminium cylinder
	\begin{table}[htbp]
		\centering
		\begin{tabular}{l c c c c c c c c c c c c c}
			\toprule
			Data set & & \multicolumn{1}{c}{} & \multicolumn{11}{c}{Tests, Devices} \\ \cmidrule(lr){4-14}
			Designation        & MID       & AC           & ENV2       & SMP2        & SMP3        & SMP4        & UTT${}^{(1)}$ & UTT${}^{(2)}$ & UTT2${}^{(1)}$ & UTT2${}^{(2)}$ & UMD2        & UMD3        & SSD2        \\ \midrule
			\verb*|ts5_d25...| & \verb|m4| & $\checkmark$ & \verb|d33| & \verb|d20|  & \textemdash & \textemdash & \verb|g2|     & \verb|g3|     & \textemdash   & \textemdash     & \verb|d27|  & \textemdash & \textemdash \\
			\verb*|ts5_d50...| & \verb|m4| & $\checkmark$ & \verb|d33| & \verb|d21|  & \textemdash & \textemdash & \verb|g2|     & \verb|g3|     & \textemdash   & \textemdash     & \verb|d27|  & \textemdash & \textemdash \\
			\verb*|ts5_d70...| & \verb|m4| & $\checkmark$ & \verb|d33| & \verb|d22|  & \textemdash & \textemdash & \verb|g2|     & \verb|g3|     & \textemdash   & \textemdash     & \verb|d27|  & \textemdash & \textemdash \\
			\verb*|ts5_d90...| & \verb|m4| & $\checkmark$ & \verb|d33| & \verb|d35|  & \textemdash & \textemdash & \verb|g2|     & \verb|g3|     & \textemdash   & \textemdash     & \verb|d27|  & \textemdash & \textemdash \\ \midrule
			\verb*|ts6_d25...| & \verb|m1| & $\checkmark$ & \verb|d33| & \textemdash & \verb|d20|  & \textemdash & \verb|g2|     & \verb|g3|     & \textemdash   & \textemdash     & \verb|d27|  & \textemdash & \textemdash \\
			\verb*|ts6_d50...| & \verb|m1| & $\checkmark$ & \verb|d33| & \textemdash & \verb|d21|  & \textemdash & \verb|g2|     & \verb|g3|     & \textemdash   & \textemdash     & \verb|d27|  & \textemdash & \textemdash \\
			\verb*|ts6_d70...| & \verb|m1| & $\checkmark$ & \verb|d33| & \textemdash & \verb|d22|  & \textemdash & \verb|g2|     & \verb|g3|     & \textemdash   & \textemdash     & \verb|d27|  & \textemdash & \textemdash \\
			\verb*|ts6_d90...| & \verb|m1| & $\checkmark$ & \verb|d33| & \textemdash & \verb|d35|  & \textemdash & \verb|g2|     & \verb|g3|     & \textemdash   & \textemdash     & \verb|d27|  & \textemdash & \textemdash \\ \midrule
			\verb*|ts7_d50...| & \verb|m5| & $\checkmark$ & \verb|d33| & \textemdash & \textemdash & \verb|d21|  & \textemdash   & \textemdash   & \verb|g2|     & \verb|g3|       & \textemdash & \verb|d27|  & \verb|d26|  \\ \bottomrule
		\end{tabular}
		\caption{Table of testing procedures and test equipment related to the data sets of \UtsAirShort{}, \UtsWaterShort{} and \UtsAlucylShort{}. Legend: AC~\ldots ambient condition status ($\checkmark$: $\vartheta = +20\pm1.5^{\circ}C$ and $U = 60\pm5$\%, $\sim$: conditions deviating from standard conditions); UTT${}^{(1)}$, UTT${}^{(2)}$, UTT2${}^{(1)}$, UTT2${}^{(2)}$~\ldots ultrasonic pulse transmission tests (the superscript denotes the channel number).}\label{tab:testsetup_ref}
	\end{table}
\end{landscape}

%
%-------------------------------------------------------------------------------
% 2) Data aquisition
\subsection{Data acquisition}\label{subsec:data_acquisition}
%Die Akquisition der Daten aus den Laborversuchen erfolgte, abhängig von der Art des Versuchs, automatisiert oder manuell. Nachfolgend finden sich die Beschreibungen der beiden Akquisitionsmethoden. In\Ufigref{fig:data_processing_workflow} findet sich eine Illustration zum Ablaufschema der Datensammlung und Datenverarbeitung.
%
The acquisition of data from the laboratory experiments was carried out either automatically or manually, depending on the type of experiment. A description of the two acquisition methods is given below. In \Ufigref{fig:data_processing_workflow}, please find a schematic representation of the data collection and processing workflow.
%
% Automated data aquisition
\paragraph{Automated data acquisition:}
%Die Signaldaten der Ultraschall-Tests (UTT, UTT2) und der Probekörpertemperatur (TEM) wurden automatisiert mit der Steuerungs- und Aufzeichnungssoftware \UswFreshconName{}\autocite{freshcon} erfasst. Die Software liest dabei die digitalisierten Daten der Datenerfassungseinheiten (Geräte ID's: \verb|d10|, \verb|d11|) in vorgegebenen Zeitabständen über die gesamte Dauer des Versuchs hinweg aus und speichert diese in Textdateien.
%
The signal data of the ultrasound tests (UTT, UTT2) and the specimen temperature (TEM) were recorded automatically by the test control and data recording software \UswFreshconName{}. The software reads the digitized data from the data acquisition units (see \Utabref{tab:devices}, \verb*|d10|, \verb*|d11|) at specified measurement intervals over the entire test duration and stores them in files.

%Die Messdaten liegen danach als menschen- und maschinenlesbare Textdateien vor. Deren Ordner- und Dateistruktur wird in \Usubsecref{subsec:data_structure_rawdata} eingehend erläutert.
%
After the ultrasound test, the measurement data are available as human- and machine-readable text files. The respective folder and file structure of the recordings is explained in \Usubsecref{subsec:data_structure_rawdata}.

%Ein Umstand ist bei der automatisierten Datenaquisition durch das FreshCon-Gerät\autocite{freshcon} besonders hervorzuheben. Das USB-Oszilloskop (siehe \Utabref{tab:devices}, \verb*|d10|) verfügt über eine automatische Amplitudenverstärkung mit elf Spannungsbereichen. Die Signalantworten der Kompressions- und Scherwellen sind deshalb skaliert. Der aktuelle Skalierungsfaktor des Oszilloskops wird von der Software \UswFreshconName{}\autocite{freshcon400} nicht aufgezeichnet und steht deshalb nicht zur Verfügung. Die Auswirkungen der Vorverstärkung treten insbesondere in den in \Usecref{sec:technical_validation} gezeigten Illustrationen zu Tage.
%
One aspect of automated data acquisition using the FreshCon device\autocite{freshcon} should be emphasised in particular. The USB oscilloscope (see \Utabref{tab:devices}, \verb*|d10|), which is part of the \UdevFreshconName{} device, has a built-in automatic amplitude pre-amplification with eleven voltage ranges (see \Utabref{tab:devaccuracy}, \verb*|d10|). Therefore, the signal responses of the compression and shear waves are scaled to some extent. The actual pre-amplification level of the oscilloscope is displayed on the screen but not recorded by the software and therefore not available. This aspect is also mentioned in the device's user manual\autocite{freshcon400} on page 25. The pre-amplifications' effect becomes particularly apparent in the graphical representations of the analysis results shown in \Usecref{sec:technical_validation}.
%
% Manual data aquisition
\paragraph{Manual data acquisition:}
%Die Messdaten aller anderen Laborversuche (ENV, ENV2, FPD, UMD, UMD2, UMD3, SSD, SSD2) wurden manuell erfasst und im Laborprotokoll der Testserie handschriftlich notiert. Danach wurden die Daten in eine Kalkulationstabelle (LibreOffice spread sheets) übertragen und als Komma-separierte Textdatei exportiert. Diese Textdateien sind die Grundlage für den Inhalt der Datei \texttt{projinfo.txt}, die nachfolgend den Rohdaten der einzelnen Datensätze zugeordnet wurde.
%
The measurement data of all other laboratory tests (ENV, ENV2, FPD, UMD, UMD2, UMD3, SSD, SSD2) described in \Usecref{subsec:test_procedures} were recorded manually in handwritten laboratory protocols. The data were then transferred to a LibreOffice\autocite{libreoffice} Calc spreadsheet and exported as a comma-separated text file. These text files are the basis for the file projinfo.txt described in \Usubsecref{subsec:data_structure_rawdata}. Subsequently, this file was assigned to the raw data of the individual datasets.

%Für die Metadaten (z.B. Informationen zu Versuchsgeräten, Materialien, Mischungen, Prozeduren) wurden Metadaten-Datenbanken unter Verwendung der Skript-Sammlung \UswDscompName{} im binären Dateiformat von \UOct{} erstellt. Diese stellen beim nachfolgenden Kompilieren der Rohdaten die Metadaten, die in den binären Datensätzen enthalten sind, zur Verfügung. Die Metadaten-Datenbanken sind ebenfalls in der Skript-Sammlung \UswDscompName{} enthalten und frei verfügbar. Siehe auch \Usecref{sec:code_availability}.
%
For the metadata (e.g. information on test equipment, materials, mixtures, procedures), metadata databases were created using the script collection \UswDscompName{}\autocite{dscompv1.2} and the open-source binary file format of \UOct{}. These databases provide the metadata for the binary datasets compiled from the collected raw data. They are an integral part of the script collection \UswDscompName{} described in \Usecref{sec:code_availability}.

%Hierbei ist zu erwähnen, dass die Datei \texttt{projinfo.txt} anstatt der vollständigen Metadaten nur die Datensatz-Identifikationsnummern der Metadaten-Datenbank enthält. Während des Kompilierungsprozesses werden die Metadaten aus den Datenbanken anhand der Identifikationsnummern in die Datensätze eingefügt.
%
It is worth mentioning that the projinfo.txt file contains only the record identification numbers from the metadata database instead of the complete metadata. Based on those identification numbers, metadata from the metadata databases is inserted into the binary datasets during compilation.

% figure, data processing workflow
\begin{figure}[htbp]
	\centering\fontfamily{cmss}\selectfont
	\begin{tikzpicture}[node distance=1.7cm]
		% start
		\node (START) [fcstartstop] {START};
		% heading 1
		\node (H1) [fcbox,below of=START,xshift=-3cm,yshift=0.5cm]
		{\parbox{5cm}{\centering \textbf{Manual data acquisition}\\ data and metadata}};
		% heading 2
		\node (H2) [fcbox,below of=START,xshift=3cm,yshift=0.5cm]
		{\parbox{5cm}{\centering \textbf{Automated data acquisition}\\ measurement data}};
		% manual data acquisition
		\node (T10) [fcbox,below of=H1,yshift=-0.7cm]
		{\parbox{5cm}{\centering environment temperature, fresh paste density, ultrasonic measurement distance, solid specimen density}};
		\node (T11) [fcbox,below of=T10,yshift=-0.8cm]
		{\parbox{5cm}{\centering Laboratory protocols\\ (hand-written)}};
		\node (T12) [fcbox,below of=T11,yshift=0cm]
		{\parbox{5cm}{\centering Protocol file\\ (LibreOffice Calc spreadsheet)}};
		\node (T13) [fcbox,below of=T12,yshift=0cm]
		{\parbox{5cm}{\centering Convert protocol\\ (CSV file)}};
		\node (T14) [fcbox,below of=T13,yshift=0cm]
		{\parbox{5cm}{\centering Extract data and generate projinfo.txt}};
		% automated data acquisition
		\node (T20) [fcbox,below of=H2,yshift=-0.2cm]
		{\parbox{5cm}{\centering ultrasonic pulse transmission test, specimen temperature}};
		\node (T21) [fcbox,right of=T13,below of=T12,xshift=4.25cm]
		{\parbox{5cm}{\centering Test control and data recording software}};
		\node (T22) [fcbox,right of=T14,below of=T13,xshift=4.25cm]
		{\parbox{5cm}{\centering Text files\\ (*.dat, *.tem, *.txt)}};
		% Data collection and processing
		\node (T30) [fcbox,below of=T14,xshift=3cm,yshift=0cm]
		{\parbox{4cm}{\centering Raw data collection\\ (each data set)}};
		\node (T31) [fcio,right of=T30,xshift=2.5cm]
		{\parbox{1.8cm}{\centering Data set\\ (*.zip)}};
		\node (T32) [fcbox,below of=T30]
		{\parbox{4cm}{\centering Compilation to\\ binary file}};
		\node (T33) [fcio,right of=T32,xshift=2.5cm]
		{\parbox{1.8cm}{\centering Data set\\ (*.oct)}};
		\node (T34) [fcbox,left of=T32,xshift=-2.5cm]
		{\parbox{2.4cm}{\centering \textbf{Metadata-databases}\\ devices, materials, mixtures, author, license, location}};
		% stop
		\node (STOP) [fcstartstop,below of=T32,yshift=0.2cm] {STOP};
		% arrows
		\draw[fcarrow] (START) -| (H1.north);
		\draw[fcarrow] (START) -| (H2.north);
		\draw[fcarrow] (H1) -- (T10);
		\draw[fcarrow] (T10) -- (T11);
		\draw[fcarrow] (T11) -- (T12);
		\draw[fcarrow] (T12) -- (T13);
		\draw[fcarrow] (T13) -- (T14);
		\draw[fcarrow] (H2) -- (T20);
		\draw[fcarrow] (T20.south) -| (T21);
		\draw[fcarrow] (T21) -- (T22);
		\draw[fcarrow] ([xshift=-0.7cm]T14.south east) -| ([xshift=-1cm]T30.north);
		\draw[fcarrow] ([xshift=0.7cm]T22.south west) -| ([xshift=1cm]T30.north);
		\draw[fcarrow] (T30) -- (T32);
		\draw[fcarrow] (T30) -- (T31);
		\draw[fcarrow] (T30) -- (T32);
		\draw[fcarrow] (T32) -- (T33);
		\draw[fcarrow] (T34) -- (T32);
		\draw[fcarrow,dashed] (T14.south) |-+(0,-0.75cm)-| (T34.north);
		\draw[fcarrow] ([yshift=-0.25cm]H1.west) -|+(-0.5,0)|- (T34.west) node[above,pos=0.25,rotate=90] {metadata};
		\draw[fcarrow] (T32) -- (STOP);
	\end{tikzpicture}
	\fontfamily{cmr}\selectfont%
	\caption{Schematic representation of the data processing workflow. Data acquisition, data collection and data set compilation.}
	\label{fig:data_processing_workflow}
\end{figure}

%-------------------------------------------------------------------------------
% 3) Computational processing
\subsection{Computational processing}\label{subsec:computational_processing}
%
%Die Computerverarbeitung der Messdaten und der zugehörigen Metadaten bezieht sich ausschließlich auf das vollständig automatisierte Kompilieren der gesammelten Rohdaten zu binären Datensätzen mit hierarchischer Datenstruktur. Die Messdaten wurden dabei weder gefiltert noch anderweitig modifiziert. Eine Illustration zu diesem Vorgang findet sich in Abbildung \Ufigref{fig:data_processing_workflow}. Im Zuge des Kompilierens wurden die nachfolgend beschriebenen Schritte ausgeführt.
%
The computational processing of the measurement data and the associated metadata refers exclusively to the fully automated compilation of the collected raw data into binary datasets. The measurement data were neither filtered nor modified in any other way. An illustration of this process, please find in \Ufigref{fig:data_processing_workflow}. The individual steps of the compilation process are listed below.

%\begin{itemize}
%	\item Einlesen der Messdaten der automatisierten Datenakquisition (\texttt{*.dat}, \texttt{tst.tem}, \texttt{measurements.txt}, \texttt{settings.txt}).
%	\item Einlesen der Messdaten der manuellen Datenakquisition (\texttt{projinfo.txt}).
%	\item Assemblieren der Metadaten-Strukturen mithilfe der Datei \texttt{projinfo.txt} und den Metadaten-Datenbanken.
%	\item Assemblieren der Datenstrukturen für die einzelnen Laborversuche aus den zuvor eingelesenen Messdaten.
%	\item Assemblieren der gesamten Datensatz-Struktur.
%	\item Speichern der assemblierten Datensatz-Struktur in einer Datensatz-Datei im binären Dateiformat von \UOct{}.
%\end{itemize}
%
\begin{itemize}
	\item Reading in the measurement data from the automated data acquisition (tst*.dat, tst.tem, measurements.txt, settings.txt).
	\item Reading in the measurement data from the manual data acquisition (projinfo.txt).
	\item Metadata structure assembly using the file `projinfo.txt' and the metadata databases.
	\item Data structure assembly for the individual laboratory experiments from the measurement data.
	\item Dataset structure assembly using the already assembled data and metadata substructures.
	\item Saving the assembled data set structure in a data set file using the binary file format of \UOct{}.
\end{itemize}

%Um die hier nur grob beschriebenen Verarbeitungsvorgänge nachvollziehbar zu gestalten, wird die dafür verwendete Skript-Sammlung \UswDscompName{} zur Verfügung gestellt. Sie auch \Usecref{sec:code_availability}.
%
The data processing steps are only roughly described here. To make the whole process comprehensible, the script collection \UswDscompName{} used for this task is also made available and described in \Usecref{sec:code_availability}.

%-------------------------------------------------------------------------------
% Analysis methods
\subsection{Analysis methods for the technical validation}\label{subsec:analysis_methods}
%Die hier beschriebenen Analysemethoden werden ausschließlich für die technische Validierung der Messdaten der Ultraschall-Tests verwendet. Anhand der technischen Validierung ist zu zeigen, dass sich in den aufgezeichneten Ultraschall-Signaldaten die zugrunde liegenden physikalischen Gesetzmäßigkeiten der Schallausbreitung widerspiegeln. Abgesehen davon sollten Versuchswiederholungen mit gleichen Parametern, unter Berücksichtigung einer Abweichung, ähnliche Resultate liefern.
%
The analysis methods described here are used to justify the technical validity of the ultrasound measurement results. The validation aims to show that the recorded ultrasound signal data reproducibly reflects the underlying physical laws of sound propagation. The following explanations describe the selected materials (datasets), the analysis methods and the analysis procedure.

\paragraph*{Materials (datasets):}
%Um eine möglichst große Bandbreite an Materialien abzudecken, wird für die technische Validierung eine Auswahl von Datensätzen der bereits erwähnten Referenztests mit Luft, Wasser und einem Aluminium-Zylinder herangezogen. Damit werden alle drei Aggregatzustände, die unter normalen Umgebungsbedingungen möglich sind, abgebildet. Da die physikalischen Eigenschaften der Referenzmaterialien aus der Literatur bekannt sind, ist eine von den Signaldaten unabhängige Prognose des zu erwartenden Materialverhaltens hinsichtlich der gegebenen Versuchsbedingungen möglich. Neben dem Materialverhalten spielt auch die Ultraschall-Messdistanz eine wichtige Rolle für die Ausbreitung der Schallwellen. Diesem Umstand wird durch die Auswahl von Signaldaten von Ultraschall-Tests mit unterschiedlicher Messdistanz Rechnung getragen. Die nachfolgenden Auflistungen enthalten die Zusammenstellungen der Datensätze, die der Analyse zugrunde gelegt werden.
%
To cover the broadest possible range of materials, a selection of data sets from the aforementioned reference tests with air, water and an aluminium cylinder are used. These materials cover all three aggregation states possible under normal ambient conditions. Since the physical properties of the reference materials are known from the literature, an independent prediction of the expected material behaviour concerning the given test conditions is possible. In addition to the material's aggregate state, the ultrasonic measuring distance also plays an important role in the propagation of the sound waves. This circumstance is reflected by using signal data from ultrasound tests with various measuring distances. The following list retains the selection of the data sets subjected to the analysis.

\begin{itemize}
	\item \UtsAirName{}\autocite{dataair}
	\begin{itemize}
		\def\Udist{25}%
		\item $D = \Udist$ mm: ts5\_d\Udist\_b16\_v800.oct, ts5\_d\Udist\_b24\_v800.oct, \\
		ts5\_d\Udist\_b33\_v800.oct, ts5\_d\Udist\_b50\_v800.oct
		%
		\def\Udist{50}%
		\item $D = 50$ mm: ts5\_d\Udist\_b16\_v800.oct, ts5\_d\Udist\_b24\_v800.oct, \\
		ts5\_d\Udist\_b33\_v800.oct, ts5\_d\Udist\_b50\_v800.oct
		%
		\def\Udist{70}%
		\item $D = 70$ mm: ts5\_d\Udist\_b16\_v800.oct, ts5\_d\Udist\_b24\_v800.oct, \\
		ts5\_d\Udist\_b33\_v800.oct, ts5\_d\Udist\_b50\_v800.oct
	\end{itemize}
	%
	\item \UtsWaterName{}\autocite{datawater}
	\begin{itemize}
		\def\Udist{25}%
		\item $D = 25$ mm: ts6\_d\Udist\_b16\_v800.oct, ts6\_d\Udist\_b24\_v800.oct, \\
		ts6\_d\Udist\_b33\_v800.oct, ts6\_d\Udist\_b50\_v800.oct
		%
		\def\Udist{50}%
		\item $D = 50$ mm: ts6\_d\Udist\_b16\_v800.oct, ts6\_d\Udist\_b24\_v800.oct, \\
		ts6\_d\Udist\_b33\_v800.oct, ts6\_d\Udist\_b50\_v800.oct
		%
		\def\Udist{70}%
		\item $D = 70$ mm: ts6\_d\Udist\_b16\_v800.oct, ts6\_d\Udist\_b24\_v800.oct, \\
		ts6\_d\Udist\_b33\_v800.oct, ts6\_d\Udist\_b50\_v800.oct
	\end{itemize}
	%
	\item \UtsAlucylName{}\autocite{dataalucyl}
	\begin{itemize}
		\def\Udist{50}%
		\item $D = 50$ mm: ts7\_d\Udist\_b16\_v800.oct, ts7\_d\Udist\_b24\_v800.oct, \\
		ts7\_d\Udist\_b33\_v800.oct, ts7\_d\Udist\_b50\_v800.oct
	\end{itemize}
\end{itemize}

%Jeder Datensatz enthält jeweils zehn Aufzeichnungen der Signalantworten von Kompressionswellen und Schwerwellen. Für den Aluminium-Zylinder werden auch die Signalantworten der Schwerwelle betrachtet, da in Festkörpern auch Transversalwellen übertragen werden. Für Luft und Wasser hingegen werden nur die Signalantworten der Kompressionswelle berücksichtigt.
%
\noindent Each data set contains ten recordings of the signal responses of compression and shear waves. For air and water, however, only the signal responses of the compression wave are considered. For the aluminium cylinder, the signal responses of the shear waves are also considered since solid materials also transmit transverse waves. 

\paragraph*{Analysis methods:}
%Um zu zeigen, dass die Signalantworten der Ultraschall-Tests tatsächlich die zugrunde liegenden physikalischen Gesetzmäßigkeiten der Schallausbreitung wiedergeben, werden die Signaldaten mit einer Prognose des zu erwartenden Schalllaufzeiten gegenübergestellt. Die Reproduzierbarkeit der Versuche wird anhand der stochastischen Eigenschaften der Signaldaten überprüft. Die Analysemethoden sind in nachfolgender Liste kurz zusammengefasst.
%
To show that the ultrasound tests' signal responses reflect the underlying physical laws of sound propagation, a prediction of the sound travel time is compared with compression and shear wave signal responses. In addition, the reproducibility of the tests is justified using the stochastic properties of signal sequences of repeated tests. The analysis methods used are briefly summarized in the following list.

%\begin{itemize}
%	\item Abschätzen der Schalllaufzeit anhand der Ultraschall-Messdistanz und den Literaturangaben für die Schallgeschwindigkeit der Referenzmaterialien. Die Umgebungsbedingungen (Temperatur, Luftfeuchtigkeit), die Messtoleranzen der Versuchsgeräte und etwaige prozedurale Fehler werden in der Abschätzung berücksichtigt. Hierbei wird vorausgesetzt, dass die Messwerte und die zugehörigen Toleranzen nicht korreliert sind.
%	%
%	\item Zusammenfassen von Signaldaten von Versuchswiederholungen zu Signalreihen. Aus den Signalreihen wird der Ensemble-Mittelwert und die Verteilung der Abweichungen der Signalamplituden vom Ensemble-Mittelwert bestimmt, da diese das mittlere Verhalten der Ultraschalltest-Konfiguration am stabilsten wiedergeben. Die Verteilung der Abweichungen wird dabei anhand von Minimum, Maximum und Quantilen charakterisiert.
%	%
%	\item Visueller Vergleich der Schallaufzeiten der ersten eintreffenden Welle und deren Reflexionen mit den Toleranzbereichen der prognostizierten Schalllaufzeiten.
%	%
%	\item Visueller Vergleich der Amplituden der ersten eintreffenden Welle und deren Reflexionen anhand des Ensemble-Mittelwerts.
%	%
%	\item Beurteilung der Wiederholbarkeit der Versuche anhand der charakteristischen Eigenschaften der Verteilung der Abweichungen.
%\end{itemize}
%
\begin{itemize}
	\item Estimating the sound travel time based on the ultrasound measurement distance and the literature data for the reference materials' speed of sound. The ambient conditions (temperature, humidity), the measurement tolerances of the test equipment and procedural errors are taken into account in the estimation. Furthermore, it is assumed that the measured values and the associated tolerances are not correlated.
	%
	\item Combining signal data from repeated tests to signal sequences. The ensemble average and the distribution of the deviations of the signal amplitudes from the ensemble average are determined from the signal sequences, as these reflect the average behaviour of the ultrasound test configuration more reliably. Minimum, maximum and quantiles characterize the distribution of the deviations.
	%
	\item Visual comparison of the sound travel times of the first incoming wave and its reflections with the tolerance ranges of the predicted sound travel times.
	%
	\item Visual comparison of the ensemble averages amplitudes of the first incoming wave and its reflections.
	%
	\item Assessment of the reproducibility based on the characteristic properties of the deviations' distribution.
\end{itemize}

\paragraph*{Analysis procedure:}
%Aus der Aufgabenstellung der technischen Validierung und den zugrunde gelegten Materialien und Methoden, wurde nachfolgend beschriebene Analyseprozedur abgeleitet. Die sehr detaillierten Ausführungen zielen nicht darauf ab, eine möglichst genaue Vorhersage zu machen, sondern vielmehr alle bekannten Randbedingungen zu berücksichtigen.
%
The subsequently described analysis procedure is derived from the task of technical validation and the chosen materials and methods. The detailed explanations do not aim to make the most accurate prediction possible but rather to consider all known boundary conditions.

%\input{article.analysis.param}
\OTsetpfx{oct2tex.param}
\begin{itemize}
%	\item Abschätzen des unteren und oberen Grenzwertes der Ultraschall-Messdistanz $D$ aus der gemessenen Distanz und den Messtoleranzen des Messgeräts (siehe \Utabref{tab:devaccuracy}, \verb*|d27|). Weitere, durchaus beträchtliche, Abweichungen begründen sich in der Versuchsdurchführung und der Gerätekonfiguration. Diese werden in \Usubsecref{subsec:test_procedures} in den Testprozeduren UMD2 und UMD3 ausführlich beschrieben und begründet.
	\item Estimation of the ultrasonic measuring distance limits $\hat{D}$ considering the measured distance $D$, procedural errors and the measuring device tolerances (see \Utabref{tab:devaccuracy}, \verb*|d27|). The source of the considerably high procedural errors are described in detail in the testing procedures UMD2 and UMD3 in \Usubsecref{subsec:test_procedures}.
	\begin{itemize}
		\item Air: $\hat{D} = D \OTnum{distairuc1.v}{1}/+\OTnum{distairuc2.v}{1} \pm\OTnum{distuc2.v}{2}$ mm
		\item Water: $\hat{D} = D \OTnum{distwatuc1.v}{1}/+\OTnum{distwatuc2.v}{1} \pm\OTnum{distuc2.v}{2}$ mm
		\item Aluminium cylinder: $\hat{D} = D \pm\OTnum{distuc2.v}{2}$ mm
	\end{itemize}
	%
%	\item Abschätzen des unteren und oberen Grenzwertes für die Temperatur $\vartheta$ des Testmediums anhand der gemessenen Raumtemperatur und der Messtoleranz des Messgeräts (siehe \Utabref{tab:devaccuracy}, \verb*|d33|).
	\item Estimation of temperature limits $\hat{\vartheta}$ for the materials air and water considering the measured ambient temperature $\vartheta$ and the measuring device tolerances (see \Utabref{tab:devaccuracy}, \verb*|d33|). $\hat{\vartheta} = \vartheta \pm\OTnum{tempuc2.v}{2}$ ${}^{\circ}$C.
	%
%	\item Abschätzen des unteren und oberen Grenzwertes für die Luftfeuchtigkeit des Mediums aus der gemessenen Luftfeuchtigkeit und den Messtoleranzen des Messgeräts (siehe \Utabref{tab:devaccuracy}, \verb*|d33|). Für die Bestimmung der temperaturabhängigen Abweichung ($\%/\text{Kelvin}$) wurde die Differenz zwischen gemessener Lufttemperatur und der Standardtemperatur ($25^{\circ}$Celsius) herangezogen.
	\item Estimation of the humidity limits $\hat{U}$ for air considering the measured ambient humidity $U$ and the measuring device tolerances (see \Utabref{tab:devaccuracy}, \verb*|d33|). It is to be mentioned that the temperature-dependent measuring tolerance estimate ($\%/\text{Kelvin}$) is based on the difference between the ambient temperature $\vartheta$ and the device calibration standard temperature ($\vartheta_{\text{std}} = 25^{\circ}$C). $\hat{U} = U \pm\OTnum{humiduc2.v}{1} \pm (\OTnum{humiducrel2.v}{2} \cdot |25 - \vartheta|)$ \%.
	%
%	\item Abschätzen des unteren und oberen Grenzwertes der Dichte des Aluminium-Zylinders aus den Abmessungen und dem Gewicht und unter Berücksichtigung der Messtoleranzen der Messgeräte (siehe \Utabref{tab:devaccuracy}, \verb*|d26|, \verb*|d27|).
	\item Estimation of the aluminium cylinder's density limits $\hat{\rho}$ considering the cylinder dimensions, its weight and the measuring device tolerances (see \Utabref{tab:devaccuracy}, \verb*|d26|, \verb*|d27|).
	\begin{itemize}
		\item Diameter: $\hat{d} = d \pm\OTnum{distuc2.v}{2}$ mm
		\item Height: $\hat{h} = h \pm\OTnum{distuc2.v}{2}$ mm
		\item Volume: $\hat{v} = \hat{d}^2 \, \frac{\pi \, \hat{h}}{4 \cdot 1000}$ cm${}^3$
		\item Mass: $\hat{m} = m \pm\OTnum{wghtuc2.v}{2}$ g
		\item Density: $\hat{\rho} = \frac{\hat{m}}{\hat{v}}$ g/cm${}^3$
	\end{itemize}
	%
%	\item Abschätzen des unteren und oberen Grenzwertes der Schallgeschwindigkeit $c$ anhand von Literaturangaben und den zuvor bestimmten Grenzwerten für Temperatur $\vartheta$ und relativer Luftfeuchtigkeit $U$.
%	Die Schallgeschwindigkeiten für Luft\autocite{etoolboxair} und Wasser\autocite{etoolboxwater} wurden aus den tabellierten Werten der Literaturangaben mittels linearer Interpolation ermittelt.
%	Da die elastischen Eigenschaften des Aluminiumzylinders nicht explizit gemessen wurden und auch sonst keine genaueren Angaben zum Material vorliegen, wurde die Schallgeschwindigkeit anhand der Dichte des Zylinders und der Elastizitätsmodule aus Literaturangaben\autocite{etoolboxalualloys} ermittelt. Der untere und obere Grenzwert für Elastizitätsmodul $E$ und Schubmodul $G$ beziehen sich dabei auf die Aluminiumlegierungen 1100 und 2014.
	\item Estimation of the speed of sound limits $\hat{c}$ based on literature values and the previously estimated limits for temperature $\hat{\vartheta}$ and relative humidity $\hat{U}$.
	The speed of sound for air\autocite{etoolboxair} and water\autocite{etoolboxwater} were interpolated linearly using the tabulated values from the literature. As the elastic properties of the aluminium cylinder were not explicitly measured, and no other more precise information on the actual material is available, the speed of sound was calculated (e.g. Garett\autocite{garett2020}, 2020) from the cylinder's density and the elastic moduli taken from literature\autocite{etoolboxalualloys}. The tolerance limits for the Young's modulus $E$ and the shear modulus $G$ refer to the tabulated values of the aluminium alloys 1100 and 2014.
	\begin{itemize}
		\item Air: $\hat{c} = I_2(\hat{\vartheta},\hat{U})$ m/s, where $I_2$ is a two-dimensional linear interpolation with the supports $\hat{\vartheta}$ and $\hat{U}$ realized by Octave's built-in function \emph{interp1}.
		%
		\item Water: $\hat{c} = I_1(\hat{\vartheta})$ m/s, where $I_1$ is a one-dimensional linear interpolation with the support $\hat{\vartheta}$ realized by Octave's built-in function \emph{interp2}.
		%
		\item Aluminium:
		\begin{itemize}
			\item Poisson's ratio for isotropic elastic materials.
			\begin{equation}
				\hat{\nu} = \frac{\hat{E}}{2 \, \hat{G}} - 1
			\end{equation}
			%
%			\item longitudinale Schallgeschwindigkeit der Kompressionswelle in isotropen Materialien
			\item Compression (longitudinal) wave in isotropic elastic materials.
			\begin{equation}
				\hat{c} = \sqrt{\frac{\hat{E}(1 - \hat{\nu})}{\hat{\rho} (1 + \hat{\nu}) (1 - 2 \, \hat{\nu})} \cdot 10^6} \quad \text{m/s}
			\end{equation}
			%
%			\item transversale Schallgeschwindigkeit der Scherwelle in isotropen Materialien
			\item Shear (transverse) wave in isotropic elastic materials.
			\begin{equation}
				\hat{c} = \sqrt{\frac{\hat{G}}{\hat{\rho}} \cdot 10^6} \quad \text{m/s}
			\end{equation}
		\end{itemize}
	\end{itemize}
	%
%	\item Abschätzen des Signalindex $\hat{n}_0$ an dem der Hochspannungs-Puls ausgelöst wurde. Zwischen dem Nullpunkt der Zeitsignaturen der Samples und dem Beginn der induktiven Störung, die durch den Hochspannungs-Puls verursacht wird, vergeht eine kurze Zeitspanne (Trigger-Delay). Die Zeitspanne ist zu groß, als dass man diese mit der Ausbreitungsgeschwindigkeit der elektromagnetischen Welle erklären könnte. Die Verzögerung entsteht möglicherweise dadurch, dass für die Verarbeitung des Trigger-Events durch Software und Hardware einige Prozessorzyklen benötigt werden. Diese Abweichung wird aufgrund von visuellen Beobachtungen und bereits vorhandenen Analysen\autocite{confpaper2} mit $\hat{n}_0 = \OTnum{ersdel.v}{0} \, -\OTnum{ersdeluc1.v}{0}/+\OTnum{ersdeluc2.v}{0}$ Samples abgeschätzt und zu den rechnerisch ermittelten Schallaufzeiten addiert.
	\item Estimation of the signal index $\hat{n}_0$ at which the high-voltage pulse excitation apparently happened. A short period (trigger delay) passes between the zero point of the samples' time signatures and the beginning of the inductive disturbance caused by the high-voltage pulse. The time period is too long to be explained by the propagation speed of the electromagnetic wave. The fact that several processor cycles are required to process the trigger event is a likely cause. This delay is estimated based on visual observations and existing analyses\autocite{confpaper2} with $\hat{n}_0 = \OTnum{ersdel.v}{0} \, -\OTnum{ersdeluc1.v}{0}/+\OTnum{ersdeluc2.v}{0}$ samples and added to the sound travel time estimates.
	%
%	\item Abschätzung des unteren und oberen Grenzwertes der Schallaufzeiten $\hat{t}_0$, $\hat{t}_1$, $\hat{t}_2$ aus Trigger-Delay $\hat{n}_0$, Ultraschall-Messdistanz $\hat{D}$ und Schallgeschwindigkeit $\hat{c}_i$ für die erste eintreffende Schallwelle und die erste und zweite Reflexion der Schallwelle.
	\item Estimation of the sound travel time tolerance ranges $\hat{t}_1$, $\hat{t}_2$, $\hat{t}_3$ from the trigger delay limits $\hat{n}_0$, the ultrasonic measuring distance limits $\hat{D}$ and the speed of sound limits $\hat{c}$ for the first incoming sound wave and the first and second reflection of the sound wave.
	\begin{itemize}
		\item Zero-time (trigger delay): $\hat{t}_0 = \frac{\hat{n}_0}{f_s} \cdot 10^6$ $\mu$s, sampling rate $f_s = 10$ MHz (see testing device settings in \Usubsecref{subsec:testing_devices})
		%
		\item Sound travel time of the first incoming wave: $\hat{t}_1 = (\frac{\hat{c}}{\hat{D}} + \hat{t}_0) \cdot 10^6$$\mu$s
		%
		\item Sound travel time of the wave' first reflection: $\hat{t}_2 = (3 \, \frac{\hat{c}}{\hat{D}} + \hat{t}_0)$ $\mu$s
		%
		\item Sound travel time of the wave' second reflection: $\hat{t}_3 = (5 \, \frac{\hat{c}}{\hat{D}} + \hat{t}_0)$ $\mu$s
	\end{itemize}
	%
%	\item Zusammenfassen von Signalen aus unterschiedlichen Datensätzen zu Signalreihen. Zur Bestimmung der stochastischen Eigenschaften werden möglichst viele Versuchswiederholungen benötigt. Da die Referenztests mit Luft, Wasser und dem Aluminium-Zylinder für jede Ultraschall-Messdistanz direkt hintereinander und ohne weitere Änderung der geometrischen Konfiguration des Ultraschall-Versuchsgeräts durchgeführt wurden, ist eine solche Kombination möglich. Dadurch ergeben sich Signalreihen $[x_k]$ mit jeweils $N_k = 40$ Signalen für jede Distanz und jedes Material.
	\item Combining signals from different data sets of test repetitions into signal sequences. This results in a signal sequence $(x_k)$ including $N_k = 40$ signals per distance and material.
	%
%	\item Berechnung des Ensemble-Mittelwerts und der Abweichung vom Ensemble-Mittelwert. Darüber hinaus wird die Verteilung der Abweichungen durch Minimum, Maximum, den unteren und oberen Quartilwert charakterisiert. Für die Berechnung der Quartile wurde die eingebaute Funktion \verb*|quantile| von \UOct{} verwendet.
	\item Calculation of the ensemble average $M$ and the distribution of the deviations $R$ from the ensemble average. The distribution of $R$ is thereby characterized by the minimum $R_{\min}$, the maximum $R_{\max}$, the lower quartile $R_{Q(0.25)}$ and the upper quartile $R_{Q(0.75)}$. It is to be noted that the quartile estimates are realized using Octave's built-in function \emph{quantile} (method No.\>5).
	\begin{itemize}
		\item Ensemble average
		\begin{equation}
			M[n] = \frac{1}{N_k}\sum_{k=0}^{N_k - 1} x_k[n]
		\end{equation}
		\item Deviation $R[k,n]$ of individual signals
		\begin{equation}
			R[k,n] = x_k[n] - M[n], \; 0 \leq k \leq N_k
		\end{equation}
		%\item Deviation' minimum: $R_{\min}[n] = \min(R[k,n])$
		%\item Deviation' maximum: $R_{\max}[n] = \max(R[k,n])$
		%\item Lower quartile: $R_{Q(0.25)}[n] = \text{quantile}(R[k,n], 0.25)$
		%\item Upper quartile: $R_{Q(0.75)}[n] = \text{quantile}(R[k,n], 0.75)$
	\end{itemize}
	%
%	\item Grafische Darstellung der Analyseergebnisse und visuelle Überprüfung der prognostizierten physikalischen Eigenschaften und der Reproduzierbarkeit der Versuche.
	\item Plotting the analysis results.
	%
	\item Visual comparison of the estimated sound travel times $\hat{t}_x$ with the ensemble average $M$.
	%
	\item Visual inspection of the distribution $R$ of the deviation from the ensemble average $M$.
\end{itemize}
%
%Der Programmcode, der für die Analyse implementiert wurde, wird aus Gründen der Nachvollziehbarkeit und Reproduzierbarkeit zur Verfügung gestellt und ist in \Usecref{sec:code_availability} referenziert. Die für die Reproduktion der Resultate benötigte Anleitung ist in \Usecref{sec:usage_notes} zu finden.
%
The realization of the analysis procedure (\UOct{} code) is provided for comprehensibility and reproducibility reasons and referred to in \Usecref{sec:code_availability}. The instructions for reproducing the analysis results are provided in \Usecref{sec:usage_notes}. The results of the above\textendash{}described analysis are presented in \Usecref{sec:technical_validation}.

%###############################################################################
% Data Records
\section{Data Records}\label{sec:data_records}
%Dieser Abschnitt widmet sich der Beschreibung von Inhalt und Struktur sämtlicher, in dieser Arbeit referenzierten Datensätze. Diese umfassen sowohl die Datensätze der experimentellen Studie zu Zementleimen im frühen Stadium der Hydratation als auch die Datensätze der Referenztests mit Luft, Wasser und Aluminium. Die Referenztests werden nachfolgend im \Usecref{sec:technical_validation} zur technischen Validierung des experimentellen Verfahrens verwendet.
%Nachfolgend finden sich die Erläuterungen zur Verfügbarkeit, der Dateinamenskonvention, den Dateiformaten, dem Inhalt und der Struktur der Datensätze.
%
This section is dedicated to describing the content and structure of all data records referenced in this work. These include the datasets from the experimental study on cement pastes and the datasets from the reference tests with air, water and the aluminium cylinder. The reference tests are subsequently used in \Usecref{sec:technical_validation} to assess the technical quality of the ultrasound measuring results.
The following subsections explain the availability of the datasets, file naming conventions, file formats, content and the structure of the datasets included in the data records in detail.

%-------------------------------------------------------------------------------
% Availability
\subsection{Availability}\label{subsec:data_availabilits}
%
%Alle Datensätze, die aus dieser Studie hervorgegangen sind, stehen am Repositorium\autocite{repotug} der technischen Universität Graz als digitale Objekte zum Herunterladen zur Verfügung. Um die nachhaltige Nutzung der veröffentlichten Daten zu gewährleisten, wurden sämtliche Datensätze unter der Lizenz\autocite{licccby4} \emph{Creative Commons Attribution 4.0 International} lizensiert.Die nachfolgende Auflistung beinhaltet alle mit dieser Studie assoziierten Repositoriums-Einträge.
%
All data records are made available as digital objects from the \emph{TU Graz Repository}\autocite{repotug} \textendash{} the officially registered file repository of Graz University of Technology. To ensure sustained usability, the they are licensed under the Creative Commons Attribution 4.0 International\autocite{licccby4} license. The following list concludes the data records associated with this study.

\begin{itemize}
	\item \UtsCemName{}\autocite{datacem}
	\item \UtsAirName{}\autocite{dataair}
	\item \UtsWaterName{}\autocite{datawater}
	\item \UtsAlucylName{}\autocite{dataalucyl}
\end{itemize}

%-------------------------------------------------------------------------------
% Record content
\subsection{Record content}\label{subsec:record_content}
%Jeder Eintrag am Repositorium besteht aus einem komprimierten TAR Archiv mit den Rohdaten der Laborversuche, einem komprimierten TAR Archiv mit den daraus kompilierten Datensätzen und einer technischen Beschreibung in Form einer PDF-Datei. Die Struktur der Einträge ist unten dargestellt.
%
Each data record includes a compressed TAR archive containing the raw data of the laboratory experiments, a compressed TAR archive with the datasets compiled from them and a technical description in the form of a PDF file. The archive structure of each record is shown below. The \Uab{ts} prefix denotes the actual test series code, and the asterisk is a placeholder for the unique data set identifiers also referred here to as the data set designation.

\medbreak
\noindent\parbox{\Udirtreewidth}{
	\dirtree{%
		.1 record\DTcomment{repository record, digital object}.
		.2 \Uab{ts}\_rawdata.tar.xz\DTcomment{raw data, compressed TAR archive}.
		.3 *.zip\DTcomment{raw data, datasets, ZIP archives}.
		.2 \Uab{ts}\_datasets.tar.xz\DTcomment{compiled data, compressed TAR archive}.
		.3 *.oct\DTcomment{compiled datasets, \UOct{} binary files}.
		.2 \Uab{ts}\_techdescr.pdf\DTcomment{technical description, PDF file}.
	}
}
\medbreak

\paragraph{Access to the record content:}
%Die oben erwähnten TAR Archive beinhalten jeweils sämtliche Datensätze einer Testserie. Um Zugriff auf die Datensätze zu erlangen, müssen die TAR Archive zuerst dekomprimiert und entpackt werden. Eine Beschreibung zu diesem Vorgang und die dafür erforderliche Software findet sich in \Usecref{sec:usage_notes}.
%
Each of the aforementioned TAR archives contains the datasets of an entire test series. Therefore, the TAR archives must first be decompressed and unpacked. A description of the procedure and the required software is available in \Usecref{sec:usage_notes}.

\paragraph{Dataset designation and filename conventions:}
%Die jeder Testserie zugrunde liegende Variation der Testparameter spiegelt sich im Dateinamen der Datensätze wider. Durch die Verwendung eines aussagekräftigen Dateinamens wird die Suche nach einzelnen Datensätzen erleichtert und die eindeutige Referenzierung ermöglicht. Für die eingangs angeführten Repositoriums-Einträge gelten hierbei, abhängig von den variierten Parametern, unterschiedliche Konventionen. In der nachfolgenden Auflistung sind die verwendeten Dateisamenkonventionen nach Repositoriums-Einträgen aufgeschlüsselt und mit Beispielen versehen.
%
The datasets' file names reflect the variation of each test series' test parameters. The file names \textendash{} without filename extension \textendash{} represent the dataset designation. A meaningful file name makes searching for individual datasets easier, and its uniqueness enables clear referencing. Since the individual test series rely on different parameter variations, different conventions apply to the data set's file names. The following listings provide an overview of the filename conventions of the respective test series. Additional examples explain how to read them.

\begin{tabbing}
	\hspace{\parindent} \= \hspace{1.2cm} \= \hspace{4.5cm}           \= col3 \kill
	                    \> \textbf{\UtsCemShort{} (90 datasets)}\\
	                    \> Filename pattern := \Uab{ts}\_wc\Uab{W}\_d\Uab{D}\_\Uab{R}.\Uab{E} \\
	                    \> \Uab{ts}       \> test series identifier   \> ts1 \\
	                    \> \Uab{W}        \> water-cement ratio $w/c$ \> (0.40, 0.45, 0.50, 0.55, 0.60) $\times$ 100 \\
	                    \> \Uab{D}        \> distance $D$             \> (25, 50, 70) mm \\
	                    \> \Uab{R}        \> repetition, turn         \> (1,\ldots,6) \\
	                    \> \Uab{E}        \> filename extension       \> oct, zip
\end{tabbing}

\def\Uexrecname{ts1\_wc055\_d70\_1}
\noindent\textbf{Example:} \Uexrecname.oct is a binary data set of test series 1. The water-cement ratio $w/c$ of the cement paste is 0.55, the ultrasonic measuring distance $D$ is 70 mm, and the turn or repetition number is 1. The filename of the corresponding raw data archive is \Uexrecname.zip.

\begin{tabbing}
	\hspace{\parindent} \= \hspace{1.2cm} \= \hspace{4.5cm}         \= col3 \kill
	                    \> \textbf{\UtsAirShort{} (48 datasets)} \\
	                    \> Filename pattern := \Uab{ts}\_d\Uab{D}\_b\Uab{L}\_v\Uab{V}.\Uab{E} \\
	                    \> \Uab{ts}       \> test series identifier \> ts5 \\
	                    \> \Uab{D}        \> distance $D$           \> (25, 50, 70, 90) mm \\
	                    \> \Uab{L}        \> recording length       \> (16, 24, 33, 50) kilo-samples \\
	                    \> \Uab{V}        \> pulse voltage          \> (400, 600, 800) Volts \\
	                    \> \Uab{E}        \> filename extension     \> oct, zip
\end{tabbing}

\def\Uexrecname{ts5\_d25\_b50\_v800}
\noindent\textbf{Example:} \Uexrecname.oct is a binary data set of test series 5. The ultrasonic measuring distance $D$ is 25 mm, the recording length (block size) L is 50 kilo-samples, and the excitation pulse voltage V is 800 Volts. The file name of the corresponding raw data archive is \Uexrecname.zip.

\begin{tabbing}
	\hspace{\parindent} \= \hspace{1.2cm} \= \hspace{4.5cm}         \= col3 \kill
	                    \> \textbf{\UtsWaterShort{} (60 datasets)} \\
	                    \> Filename pattern := \Uab{ts}\_d\Uab{D}\_b\Uab{L}\_v\Uab{V}[\_\Uab{R}].\Uab{E} \\
	                    \> \Uab{ts}       \> test series identifier \> ts6 \\
	                    \> \Uab{D}        \> distance $D$           \> (25, 50, 70, 90) mm \\
	                    \> \Uab{L}        \> recording length       \> (16, 24, 33, 50) kilo-samples \\
	                    \> \Uab{V}        \> pulse voltage          \> (400, 600, 800) Volts \\
	                    \> \Uab{R}        \> repetition, turn       \> (1,2) \\
	                    \> \Uab{E}        \> filename extension     \> oct, zip
\end{tabbing}

\noindent Please note that the repetition number \Uab{R} is available for the test runs of \UtsWaterShort{} with $D = 90$ mm only. This circumstance is explained in the sampling procedure SMP3 in \Usecref{subsec:test_procedures}.

\begin{tabbing}
	\hspace{\parindent} \= \hspace{1.2cm} \= \hspace{4.5cm}         \= col3 \kill
	                    \> \textbf{\UtsAlucylShort{} (12 datasets)} \\
	                    \> Filename pattern := \Uab{ts}\_d\Uab{D}\_b\Uab{L}\_v\Uab{V}.\Uab{E} \\
	                    \> \Uab{ts}       \> test series identifier \> ts7 \\
	                    \> \Uab{D}        \> distance $D$           \> 50 mm \\
	                    \> \Uab{L}        \> recording length       \> (16, 24, 33, 50) kilo-samples \\
	                    \> \Uab{V}        \> pulse voltage          \> (400, 600, 800) Volts \\
	                    \> \Uab{E}        \> filename extension     \> oct, zip
\end{tabbing}

% File formats
\paragraph{File formats:}
%Alle Dateien in den Datensätzen verwenden ausschließlich quelloffene Dateiformate. Die Dateiformate und die Software, mit denen diese Dateien erstellt wurden, finden sich in der nachfolgenden Aufstellung.
%
For all files in the data records only open-source file formats are used. The file formats and the software used to create these files are listed below.

\begin{tabbing}
	\hspace{\parindent} \= \hspace{2.5cm} \= \hspace{4.5cm} \= \hspace{3cm} \kill
	               \> \textbf{Extension} \> \textbf{Description}   \> \textbf{Software}                  \\
	               \> tar.xz             \> compressed TAR archive \> GNU tar 1.34\autocite{tar}         \\
	               \> zip                \> ZIP archive            \> Gzip 1.10\autocite{gzip}           \\
	               \> oct                \> Octave binary file     \> GNU Octave 6.2.0\autocite{oct620}  \\
	               \> dat, tem, txt      \> text/plain, us-ascii   \> FreshCon 4.01\autocite{freshcon400}
\end{tabbing}

%-------------------------------------------------------------------------------
% Data structure - raw data
\subsection{Data structure \textendash{} raw data datasets}\label{subsec:data_structure_rawdata}
%Die Rohdatenarchive (*\_rawdata.tar.xz) umfassen jeweils eine Reihe von ZIP-Archiven (*.zip). Diese beinhalten die gesammelten Rohdaten einer Reihe zusammenhängender Versuche. Die Rohdaten bestehen aus Textdateien, deren Inhalte unterschiedliche Strukturen aufweisen. Für alle Textdateien gilt, dass Kommentarzeilen immer mit zwei Hash-Zeichen (\#\# ) beginnen. Diese werden bei der maschinellen Interpretation ignoriert. Die nachfolgende Baumstruktur illustriert die Ordnerstruktur in den ZIP-Archiven.
%
The raw data archives (*\_rawdata.tar.xz) contain a set of ZIP archives (*.zip). These consist of the collected raw data from all experiments related to one test run.
The raw data are human- and machine-readable text files whose contents have different structures. For all text files, comment lines always begin with two pond signs (\#\#) which are silently ignored during machine interpretation. The tree view below shows the directory and file structure in the raw data ZIP archives.

\medbreak
\noindent\parbox{\Udirtreewidth}{
	\dirtree{%
		.1 \Uab{archive-filename}\DTcomment{directory, decompressed ZIP archive}.
		.2 projinfo.txt\DTcomment{manually aquired test data and metadata}.
		.2 Channel 1\DTcomment{measurement data, specimen I}.
		.3 measurements.txt\DTcomment{list of signal recordings and recording times}.
		.3 settings.txt\DTcomment{testing device settings}.
		.3 tst.tem\DTcomment{specimen temperature recordings}.
		.3 tst\Uab{num}.dat\DTcomment{files of all signal recordings}.
		.2 Channel 2\DTcomment{measurement data, specimen II}.
		.3 measurements.txt\DTcomment{list of signal recordings and recording times}.
		.3 settings.txt\DTcomment{testing device settings}.
		.3 tst.tem\DTcomment{specimen temperature recordings}.
		.3 tst\Uab{num}.dat\DTcomment{files of all signal recordings}.
	}
}
\medbreak

\paragraph{File structure \textendash{} projinfo.txt}
%Die Datei \texttt{projinfo.txt} beinhaltet eine Sammlung aller manuell dokumentierten Ergebnisse von Laborversuchen. Darüber hinaus beinhaltet diese Datei zusätzliche Metadaten zur Testserie und zu den Versuchen. Jede Zeile dieser Datei repräsentiert einen eigenständigen Eintrag mit folgendem Zeilenformat: \verb|[datatype] tag = value|.
%
The projinfo.txt file supplies all manually collected laboratory test results. In addition, this file contains the metadata about the test series and the tests. Each line of this file represents an independent entry with the following line format: \texttt{[datatype] tag = value}.
The data type descriptor \verb*|[datatype]| in brackets can take one of the following values: (1) \verb*|str| for character arrays; (2) \verb*|bool| for Boolean values (\verb*|true| or \verb*|false|); (2) \verb*|uint| for unsigned integral numbers; \verb*|sng| for single precision floating point numbers (32 Bit); (3) \verb*|dbl| for double precision floating point numbers (64 Bit). Boolean values and character arrays (strings) are always surrounded by double-quotes (e.g. \verb*|"string"|, \verb*|"true"|).

\paragraph{File structure \textendash{} measurements.txt}
%Die Datei \texttt{measurements.txt} ist eine menschen- und maschinenlesbare, Tabulator-separierte Textdatei. Sie beinhaltet eine zweispaltige Liste mit Dateinamen (e.g. \texttt{tst0001.dat}) und Zeitpunkten der Signalaufzeichnungen (e.g. 01:26:30). Die Zeiten beziehen sich auf den Startzeitpunkt der automatisierten Versuchsdurchführung.
%
The measurements.txt file is a tab-separated text file. It contains a two-column list with file names (e.g. tst0001.dat) and the signal recording times (e.g. 01:26:30). The times refer to the time when the automated test execution was initiated (t = 0 s).

\paragraph{File structure \textendash{} settings.txt}
%Die Datei \texttt{settings.txt} ist eine Tabulator-separierte Textdatei. Sie beinhaltet die Einstellungen der Software, mit der die automatisierte Versuchsdurchführung der Ultraschall-Tests gesteuert wird. In der ersten Spalte finden sich die Bezeichnungen der Einstellungen, in der zweiten Spalte die zugehörigen Werte.
%
The settings.txt file is a tab-separated text file. It contains the software settings used to control the automated execution of the ultrasonic pulse transmission tests. The first column holds the names of the settings; the second column retains the corresponding values.

\paragraph{File structure \textendash{} tst.tem}
%Die Datei \texttt{tst.tem} ist eine menschen- und maschinenlesbare, Tabulator-separierte Textdatei und beinhaltet die Aufzeichnungen der automatisierten Temperaturmessung der Probekörper mittels Thermoelementen.
%Die erste Zeile besteht aus der Bezeichnung der Aufzeichnungssoftware, die zweite Zeile aus den Nummern der vier Kanäle. Alle nachfolgenden Zeilen beinhalten die Temperaturaufzeichnungen der vier Kanäle (Spalte 1 bis 4, Grad Celsius) und den Zeitpunkt der Aufzeichnung (Spalte 5). Die Zeitwerte beziehen sich dabei auf den Startzeitpunkt der automatisierten Versuchsdurchführung.
%
The tst.tem file is a tab-separated text file and contains the recordings of the automated temperature measurement of the test specimens. The first line consists of the name of the recording software and the second line the channel identification numbers of the four available channels. In all subsequent lines the temperature recordings of each channel (columns 1 to 4, ${}^{\circ}$C) and the recording time (column 5, seconds) are stored. The recording time refers to the time when the automated test execution was initiated (t = 0 s).

\paragraph{File structure \textendash{} tst\textlangle{}num\textrangle{}.dat}
%Die Dateien \texttt{tst\Uab{num}.dat} sind menschen- und maschinenlesbare, Tabulator-separierte Textdateien und beinhalten die Aufzeichnungen der automatisiert durchgeführten Ultraschall-Signaldaten. Jede Zeile beinhaltet die Zeitsignatur und die Amplitude eines Samples. In der ersten Spalte finden sich die Zeitsignaturen (Zeitpunkt in Sekunden) und in der zweiten Spalte die Signalamplituden (Spannung in Volt). Die Zahlenwerte in beiden Spalten sind vorzeichenbehaftet und auf elf Stellen limitiert. Der Trigger-Punkt (der Zeitpunkt, an dem der Puls ausgelöst wurde) ist anhand der Zeitsignatur 0.0000000000 zu erkennen. Alle Samples davor haben ein negatives Vorzeichen und liegen im Signalvorspann. Die zugehörigen Signalamplituden des Signalvorspanns beinhalten ausschließlich Rauschen.
%
The tst\Uab{num}.dat files are tab-separated text files and contain the automated ultrasound signal data recordings where each line represents the time-amplitude tuple of one sample. The first column holds the sample time signatures in seconds, and the second column holds the signal amplitudes in volts. The numerical values in both columns are signed and limited to eleven digits. The trigger point (the time when the high-voltage pulse was triggered) can be identified by the time signature 0.0000000000. The time signature of all samples before the trigger point have a negative sign and represent the signal's preamble (prefix or pre-trigger section). The signal amplitudes in the signal's preamble consist of noise floor only.

%-------------------------------------------------------------------------------
% Data structure - compiled data
\subsection{Data structure \textendash{} compiled binary datasets}\label{subsec:data_structure_compiled}
%
%Jedes Datensatzarchiv (*\_datasets.tar.xz) umfasst eine Sammlung von Binärdateien (*.oct). Die Binärdateien beinhalten eine hierarchische Datenstruktur, die einer Verzeichnisstruktur ähnelt und aus einer Grundstruktur, Substrukturen und Datenelementen besteht.
%
The data set archives (*\_dataset.tar.xz) contain a collection of binary files (*.oct). These binary datasets have a hierarchical data structure that resembles a directory structure. It is made of a basic structure with substructures and data elements. All structure nodes of the basis structure contain further substructures holding the data elements. The data elements represent the lowest level of the hierarchical data structure and are here referred to as \emph{atomic elements}. These contain the data and metadata of all laboratory experiments.

\paragraph{Basic structure:}
%Die Grundstruktur stellt das \emph{Rückgrat} der Datenstruktur dar. Sämtliche Strukturknoten beinhalten weitere  Substrukturen und deren Datenelemente. Die Datenelemente stellen dabei die unterste Ebene der hierarchischen Datenstruktur dar und werden hier als atomische Elemente bezeichnet (atomic reference, attribute and data element). Diese beinhalten die Daten und Metadaten aller Laborversuche. In Abbildung \ref{fig:dstruct_basic} findet sich eine Übersicht der Grundstruktur.
%
The basic structure represents the backbone of the hierarchical data structure and ties the substructures together. The substructure \texttt{dataset.tst} introduces an additional structure level which holds the substructures containing the laboratory test data. The tree view below briefly summarizes the basic data structure's elements as used for the datasets of \UtsCemShort{}.

\medbreak
\noindent\parbox{\Udirtreewidth}{
	\dirtree{%
		.1 dataset\DTcomment{Structure root, $C = 1$}.
		.2 meta\_ser\DTcomment{Test series metadata, $C = 1$}.
		.2 meta\_set\DTcomment{Data set metadata, $C = 1$}.
		.2 loc\DTcomment{Geo-location information, $C \geq 1$}.
		.2 lic\DTcomment{License information, $C \geq 1$}.
		.2 aut\DTcomment{Author information, $C \geq 1$}.
		.2 dev\DTcomment{Testing device information, $C \geq 1$}.
		.2 mat\DTcomment{Material information, $C \geq 1$}.
		.2 rec\DTcomment{Mixture recipe, $C = 1$}.
		.2 mix\DTcomment{Mixing procedure, $C = 1$}.
		.2 spm\DTcomment{Specimen information, specimen I and II, $C = 2$}.
		.2 tst\DTcomment{Test collection, $C = 1$}.
		.3 s01\DTcomment{Test, Fresh paste density, $C \geq 0$}.
		.3 s02\DTcomment{Test, Solid specimen density, specimen I, $C = 1$}.
		.3 s03\DTcomment{Test, Solid specimen density, specimen II, $C = 1$}.
		.3 s04\DTcomment{Test, Ultrasonic measuring distance, specimen I, $C = 1$}.
		.3 s05\DTcomment{Test, Ultrasonic measuring distance, specimen II, $C = 1$}.
		.3 s06\DTcomment{Test, Ultrasonic pulse transmission test, specimen I, $C = 1$}.
		.3 s07\DTcomment{Test, Ultrasonic pulse transmission test, specimen II, $C = 1$}.
		.3 s08\DTcomment{Test, Specimen temperature, specimen II, $C \geq 0$}.
		.3 s09\DTcomment{Test, Environmental conditions, $C = 1$}.
	}
}
\medbreak

\paragraph{Substructures:}
%Die Substrukturen (e.g. meta\_set, aut, s01) beinhalten thematisch zusammengehörige Datenelemente, die 'atomic elements'. Die Substrukturen liegen im Datensatz entweder als skalare Substruktur (e.g. meta\_set) oder als indizierte Substruktur-Sequenz (e.g. dev) vor. Bei Substruktur-Sequenzen ist die Zusammensetzung der darin enthaltenen Datenelemente identisch. Diese unterscheiden sich nur durch die in den Datenfeldern gespeicherten Daten.

%Ein gemeinsames Merkmal aller Substrukturen und Datenelemente sind die Datenfelder \emph{object} (e.g. spm.obj) und \emph{version} (e.g. spm.ver). Das Feld \emph{object} beinhaltet einen eindeutigen Bezeichner, der das Format der Substruktur repräsentiert. Das Feld \emph{version} beinhaltet einen Tupel aus zwei positiven Ganzzahlen und repräsentiert die Versionsnummer des Strukturformats. Anhand dieser beiden Datenfelder ist es möglich, zukünftige Adaptierungen und Korrekturen sichtbar zu machen und die Kompatibilität mit Analysealgorithmen sicherzustellen.
%
The substructures (e.g. \texttt{dataset.meta\_set, dataset.aut}, \texttt{dataset.s01}) contain thematically related data elements, the \emph{atomic elements}. The substructures are present in the data set either as a scalar substructure (cardinality $C = 1$, e.g. \texttt{dataset.meta\_set}) or as an indexed substructure sequence (cardinality $C \geq 1$, e.g. \texttt{dataset.dev}). In substructure sequences, the composition of the data elements is identical. These only differ in the data stored in the fields of the respective data elements.

A common feature of all substructures and data elements are the fields \emph{object} (e.g. \texttt{dataset.spm.obj}) and \emph{version} (e.g. \texttt{dataset.spm.ver}). The \emph{object} field contains a unique identifier representing the format of the substructure. The \emph{version} field contains a tuple of two unsigned integers representing the version number of the structure format. By these two data fields, it is possible to make future adaptations and corrections visible and to ensure compatibility with analysis algorithms relying on a specific structure format.

\paragraph{Atomic elements:}
%Die atomic elements bilden die unterste Strukturebene. Sie sind aus mehrenen Datenfeldern zusammengesetzt und können deshalb als komplexe Datentypen betrachtet werden. Die Zusammensetzung der Datenfelder dieser Elemente richtet sich nach deren Verwendung. In den Datensätzen dieser Studie werden die drei nachfolgend definierten Strukturtypen verwendet.
%
The atomic elements form the lowest structural level. They are made up of several data fields and can, therefore, be regarded as complex data types. The composition of the data fields of these elements depends on their use. The three structure types defined below are used in the data sets of this study.

\begin{itemize}
%	\item Atomic data element (ADE): Dieses Element wird vorwiegend zum Speichern von numerischen Daten (z.B., Messdaten) verwendet und beinhaltet die Datenfelder \emph{tag} (ADE.t), \emph{value type} (ADE.vt), \emph{value} (ADE.v), \emph{physical unit} (ADE.u) und \emph{description} (ADE.d). Das Feld ADE.vt beinhaltet einen Datentyp-Deskriptor und ermöglicht die korrekte Interpretation des im Feld ADE.v gespeicherten Wertes. Das Feld ADE.u gibt Auskunft über die physikalische Einheit des in ADE.v gespeicherten Wertes.
	\item Atomic data element (ADE): This element is mainly used to store numerical data (e.g. measurement data) and contains the fields \emph{tag} (ADE.t), \emph{value type} (ADE.vt), \emph{value} (ADE.v), \emph{physical unit} (ADE.u) and \emph{description} (ADE.d). The field ADE.vt contains a data type descriptor and enables the correct interpretation of the value stored in the field ADE.v. The field ADE.u provides information about the physical unit of the value stored in ADE.v.
	%
%	\item Atomic attribute element (AAE): Dieses Element wird ausschließlich zum Speichern von Metadaten in Form von Zeichenketten verwendet und beinhaltet die Datenfelder \emph{tag} (AAE.t), \emph{value} (AAE.v) und \emph{description} (AAE.d). Das Feld AAE.v kann entweder aus einer einzelnen Zeichenkette oder einer Sequenz von Zeichenketten bestehen.
	\item Atomic attribute element (AAE): This element is used exclusively for storing metadata in the form of strings (character arrays) and contains the fields \emph{tag} (AAE.t), \emph{value} (AAE.v) and \emph{description} (AAE.d). The AAE.v field can consist of either a single string or a sequence of strings.
	%
%	\item Atomic reference element (ARE): Dieses Element wird ausschließlich zum Referenzieren von Substrukturen verwendet und beinhaltet die Felder \emph{tag} (ARE.t), \emph{identifier} (ARE.i), \emph{reference} (ARE.r) und \emph{description} (ARE.d). Mit diesem Element wird verhindert, dass Kopien von mehrfach verwendeten Substrukturen angelegt werden müssen. Beispielsweise für einen Probekörper, der in mehreren aufeinander folgenden Versuchen verwendet wird. Das Feld ARE.r beinhaltet eine Sequenz von Zeichenketten, die den Strukturpfad zur referenzierten Substruktur abbilden (e.g. \{'spm'\}). Das Feld ARE.i beinhaltet den eindeutigen numerischen Bezeichner der referenzierten Substruktur. Alle referenzierbaren Substrukturen beinhalten ein ADE mit dem Objektnamen d01, dessen Feld \emph{value} (d01.v) den eindeutigen numerischen Bezeichner enthält.
	\item Atomic reference element (ARE): This element is used exclusively for referencing substructures and contains the fields \emph{tag} (ARE.t), \emph{identifier} (ARE.i), \emph{reference} (ARE.r) and \emph{description} (ARE.d). This element prevents the need to create copies of substructures used multiple times, for example, for a test specimen used in several consecutive tests. The field ARE.r contains a sequence of character strings that map the structure path to the referenced substructure (e.g. \{'dataset.spm'\}). The field ARE.i contains the unique numerical identifier of the referenced substructure. All referenceable substructures contain an ADE with the object name d01, whose field \emph{value} (d01.v) contains the unique numerical identifier.
\end{itemize}

%Die Datenfelder \emph{tag} und \emph{description} sind in allen drei Varianten vorhanden und beinhalten jeweils die Kurzbezeichnung des Elements und die Beschreibung des Inhalts des Datenelements. Eine detaillierte Darstellung der Datenstruktur der Datensätze der \UtsCemShort{} findet sich in Supplementary Figure 1. Die Datenstruktur der Datensätze der Referenztests der Testserien \UtsAirShort{}, \UtsWaterShort{} und \UtsAlucylShort{} findet sich in Supplementary Figure 2.
%
\noindent The fields \emph{tag} and \emph{description} are present in all three variants and contain the data element's short name and the content's description, respectively. A detailed illustration of the datasets' structure elements of \UtsCemShort{}, please find in Supplementary Figure 1. The datasets' structure of the reference tests of \UtsAirShort{}, \UtsWaterShort{} and \UtsAlucylShort{}, please find in Supplementary Figure 2. Application examples in \Usecref{sec:usage_notes} explain how to access the data in the data structure.

%###############################################################################
% Technical Validation
\section{Technical Validation}\label{sec:technical_validation}
%In diesem Abschnitt wird die technische Qualität der Ultraschall-Signaldaten validiert. Ziel der Validierung ist es, zu zeigen, dass die Signaldaten die zugrunde liegenden physikalischen Gesetzmäßigkeiten der Schallausbreitung reproduzierbar wiedergeben. Dafür werden die Ultraschall-Messdaten der bereits erwähnten Referenztests der Testserien \UtsAirName{}, \UtsWaterName{} und \UtsAlucylName{} herangezogen, da deren Materialeigenschaften bekannt sind. Eine ausführliche Beschreibung der dafür ausgewählten Signaldaten und Analysemethoden findet sich in \Usubsecref{subsec:analysis_methods}.
%Die Validierung wird anhand des Ensemble-Mittelwerts von Signalreihen, bestehend aus Signaldaten von Versuchswiederholungen, und der Abweichung vom Ensemble-Mittelwert durchgeführt. Der Ensemble-Mittelwert repräsentiert das mittlere Verhalten der Versuchswiederholungen; die Verteilung der Abweichungen vom Ensemble-Mittelwert gibt Aufschluss über die Reproduzierbarkeit der Versuche.
%Aufgrund von Messtoleranzen und Verfahrensfehlern ist nicht zu erwarten, dass die literaturbasierten Prognosen für die Schalllaufzeit von den Signaldaten exakt wiedergegeben werden. Das beobachtbare Verhalten sollte jedoch innerhalb der abgeschätzten Toleranzgrenzen liegen. Folgende Effekte und Verhaltensmuster sollten in den Analyseresultaten abzulesen sein.
%
This section is dedicated to validating the technical quality of the ultrasound measuring results. The validation aims to show that the signal data reproducibly reflects the underlying physical laws of sound propagation. For this purpose, the ultrasound measurement data from the datasets of \UtsAirShort{}, \UtsWaterShort{} and \UtsAlucylShort{} are used, since the properties of the materials used are known. The selected datasets and the analysis methods are detailed in \Usubsecref{subsec:analysis_methods}.

During the validation procedure, the ensemble average of signal sequences and the signal's deviation from the ensemble average are estimated and displayed. The ensemble average represents the average signal response and is used to justify whether the signal data reflects the physical laws of sound propagation. The distribution of the deviations from the ensemble average provides information on the reproducibility of the ultrasound tests.

Due to measurement tolerances and procedural errors, the analysis results are not expected to accurately reproduce the literature-based predictions for the sound travel time also referred to as time-of-flight (ToF). However, those predictions should be within the estimated tolerance limits. The following effects and behavioural patterns should be evident in the analysis results.

%\begin{itemize}
%	\item Die Schalllaufzeiten sollten im Bereich von bekannten Werten aus der Literatur liegen.
%	\item Die Schalllaufzeiten der Reflexionen der Schallwelle sind ungerade ganzzahlige Vielfache der Schalllaufzeit der ersten eintreffenden Schallwelle.
%	\item Für Luft (näherungsweise ideales Gas) stehen die maximale Amplitude der ersten eintreffenden Schallwelle und die maximalen Amplituden der Reflexionen dieser Schallwelle in einem linearen Zusammenhang.
%	\item Wiederholtes Ausführen der Versuche führt bei gleichen Versuchsparametern zu nahezu gleichen Ergebnissen.
%	\item Die Schalllaufzeiten sind von der Messdistanz $D$ linear abhängig.
%\end{itemize}
%
\begin{enumerate}
	\item The sound travel time observed is within the tolerance range of literature-based estimates considering procedural and measuring errors.
	\item The relation between the sound travel time and the ultrasonic measuring distance is linear.
	\item The sound travel times of the reflections of the sound wave are odd integer multiples of the sound travel time of the first appearance of the sound wave.
	\item For all materials, the signal amplitudes decrease with increasing ultrasonic measuring distance.
	\item For air (an approximately ideal gas), the maximum amplitude of the first incoming sound wave and the maximum amplitudes of the reflections of this sound wave are decreasing linearly.
	\item Using the same test parameters, repeated test execution leads to similar results.
\end{enumerate}

%Die grafischen Darstellungen der Analyseergebnisse sind, geordnet nach Testserie und Ultraschall-Messdistanz, in der nachfolgenden Auflistung zusammenfasst.
%
The graphical representations of the analysis results are summarized in the following list, sorted by test series and ultrasonic measuring distance.

%\begin{itemize}
%	\item \UtsAirName{}, Signalantwort der Primärwelle
%	\begin{itemize}
%		\item $D = 25$ Millimeter: \Ufigrefonline{fig:validate_air_d25}
%		\item $D = 50$ Millimeter: \Ufigref{fig:validate_air_d50}
%		\item $D = 70$ Millimeter: \Ufigrefonline{fig:validate_air_d70}
%	\end{itemize}
%	\item \UtsWaterName{}, Signalantwort der Primärwelle
%	\begin{itemize}
%		\item $D = 25$ Millimeter: \Ufigrefonline{fig:validate_water_d25}
%		\item $D = 50$ Millimeter: \Ufigref{fig:validate_water_d50}
%		\item $D = 70$ Millimeter: \Ufigrefonline{fig:validate_water_d70}
%	\end{itemize}
%	\item \UtsAlucylName{}, $D = 50$ Millimeter
%	\begin{itemize}
%		\item Signalantwort der Primärwelle (Kompressionswelle): \Ufigref{fig:validate_alucyl_pri_d50}
%		\item Signalantwort der Sekundärwelle (Scherwelle): \Ufigref{fig:validate_alucyl_sec_d50}
%	\end{itemize}
%\end{itemize}
%
\begin{itemize}
	\item \UtsAirName{}, primary wave' signal response
	\begin{itemize}
		\item $D = 25$ mm: \Ufigref{fig:validate_air_d25}
		\item $D = 50$ mm: \Ufigref{fig:validate_air_d50}
		\item $D = 70$ mm: \Ufigref{fig:validate_air_d70}
	\end{itemize}
	\item \UtsWaterName{}, primary wave' signal response
	\begin{itemize}
		\item $D = 25$ mm: \Ufigref{fig:validate_water_d25}
		\item $D = 50$ mm: \Ufigref{fig:validate_water_d50}
		\item $D = 70$ mm: \Ufigref{fig:validate_water_d70}
	\end{itemize}
	\item \UtsAlucylName{}, $D = 50$ mm
	\begin{itemize}
		\item Primary wave' signal response: \Ufigref{fig:validate_alucyl_pri_d50}
		\item Secondary wave' signal response: \Ufigref{fig:validate_alucyl_sec_d50}
	\end{itemize}
\end{itemize}

%Die Analyseresultate zeigen, dass sich die prognostizierten Schalllaufzeiten, tatsächlich aus den Ultraschall-Signaldaten ablesen lassen. Anhand der Darstellungen wird auch ersichtlich, dass alle oben aufgelisteten Verhaltensmuster mit Ausnahme des Kriteriums No. 4 erfüllt sind.
%Die maximalen Amplituden $A_{\max}$ sollten mit zunehmender Ultraschall-Messdistanz abnehmen. So sollte beispielsweise $A_{\max}$ der Referenztests mit Wasser für die Messdistanz von $D = 70$ mm ($\approx$ 1 V) kleiner sein als $A_{\max}$ für die Messdistanz von $D = 50$ mm ($\approx$ 0.07 V). Dies ist jedoch nicht der Fall. Dieses widersprüchliche Verhalten ist der in \Usubsecref{subsec:data_acquisition} erwähnten automatischen Amplitudenskalierung des Messinstrumentariums geschuldet. In den Ergebnissen der Referenztests mit Luft sind überhaupt für alle drei Distanzen (25, 50 und 70 mm) ähnliche maximale Amplituden ($\approx$ 0.001 V) zu beobachten. Innerhalb der Signale ist dieses Kriterium jedoch erfüllt, da die maximalen Amplituden der Reflexionen der Schallwelle in allen dargestellten Fällen mit zunehmender Distanz kleiner werden.
%Die Wiederholbarkeit der Ultraschallversuche scheint durchwegs gegeben zu sein. Die minimalen und maximalen Abweichungen der Signalamplituden vom Ensemble-Mittelwert liegen in allen dargestellten Fällen im Bereich von einem Zwanzigstel der maximalen Signalamplitude.
%Die Darstellungen der Anylyseresultate für den Aluminium-Zylinder sind zugegebenermaßen schwer zu lesen. Besonders gut sichtbar wird hier jedoch der in \Usubsecref{subsec:experimental_setup} erwähnte Umstand, dass die Signalantwort der Sekundärwelle in \Ufigref{fig:validate_alucyl_sec_d50} von der Signalanwort der Primärwelle überlagert wird. Für die Signalantwort der Primarwelle in \Ufigref{fig:validate_alucyl_pri_d50} gilt umgekehrt genau das gleiche. Ohne größere Probleme ablesen lassen sich die Schalllaufzeit der Primärwelle und die Abweichungen vom Ensemble-Mittelwert. Anhand der Abweichungen lässt sich jedoch ablesen, dass dieses schwer zu interpretierende Verhalten des Aluminium-Zylinders wenigstens ausreichend reproduzierbar ist.
%
The illustrations of the analysis results show that the predicted sound travel times can be read from the ensemble average $M$ of the ultrasound signal sequences. They also show that almost all behavioural patterns listed above are met, with the exception of criterion No. 4.

According to criterion No. 4, a reciprocal relation between ultrasonic measuring distance $D$ and the maximum signal amplitude of the first appearance of the sound wave is expected. The analysis results of the reference tests on air and water do not satisfy this expectation. For the reference tests on water, the maximum amplitude ($M_{\max} \approx 1$ V) shown in \Ufigref{fig:validate_water_d70} ($D = 70$ mm) is larger than the maximum amplitude ($M_{\max} \approx 0.07$ V) shown in \Ufigref{fig:validate_air_d50} ($D = 50$ mm). Furthermore, for the reference tests on air, the maximum amplitude of $M$ seems to be independent of the ultrasonic measuring distance of $D$ because the maximum amplitudes of ($M_{\max} \approx 0.001$ V) in \Ufigref{fig:validate_air_d25} ($D = 25$ mm), \Ufigref{fig:validate_air_d50} ($D = 50$ mm) and \Ufigref{fig:validate_air_d70} ($D = 70$ mm) are almost equal.
This contradictory behaviour is due to the automatic amplitude pre-amplification of the oscilloscope mentioned in \Usubsecref{subsec:data_acquisition}. Nevertheless, this criterion is met within the ensemble average of a signal sequence, since the maximum amplitudes of the reflections of the sound wave become smaller with increasing distance.

The analysis results for the aluminium cylinder are admittedly difficult to read. Particularly apparent becomes the fact mentioned in \Usubsecref{subsec:experimental_setup} that the signal response of the secondary wave (shear wave) in \Ufigref{fig:validate_alucyl_sec_d50} is superimposed by the signal response of the primary wave (compression wave). Conversely, the same applies to the signal response of the primary wave shown in \Ufigref{fig:validate_alucyl_pri_d50}. However, the sound travel time of the primary wave and the deviation from the ensemble average are readable.

The reproducibility of the ultrasound tests appears to be consistent. The minimum and maximum deviations are in the range of one-twentieth of the maximum amplitude of the ensemble average in all cases shown. Whether that is sufficient for a particular application can only be justified within the context of that application.

% figure, air, D = 25mm, channel 1, ensemble average and deviation to ensemble average of 40 signals
\OTsetpfx{oct2tex.air_d25_v800_P}
\begin{figure}[htbp]
	\centering\fontfamily{cmss}\selectfont
	\begin{tikzpicture}
		\begin{axis}[UgraphMain]
			\OTread{stab.v}
			\Uplotvalidmain{}
			\addplot[markerline2] coordinates {%
				(\OTuse{t1.v},-0.00077)%
				(\OTuse{t2.v},-0.0005)%
				(\OTuse{t3.v}, -0.00022)} node[below,pos=0.7,rotate=15] {$\approx$ linear};
		\end{axis}
		\begin{axis}[UgraphSub]
			\OTread{dtab.v}
			\Uplotvalidsub{}
		\end{axis}
	\end{tikzpicture}
	\fontfamily{cmr}\selectfont%
	\vspace*{1em}
	\caption{\UtsAirName{} \textendash{} primary wave, $D = 25$ mm. \Ucapvalidpangra{}}
	\label{fig:validate_air_d25}
\end{figure}

% figure, air, D = 50mm, channel 1, ensemble average and deviation to ensemble average of 40 signals
\OTsetpfx{oct2tex.air_d50_v800_P}
\begin{figure}[htbp]
	\centering\fontfamily{cmss}\selectfont
	\begin{tikzpicture}
		\begin{axis}[UgraphMain]
			\OTread{stab.v}
			\Uplotvalidmain{}
			\addplot[markerline2] coordinates {%
				(\OTuse{t1.v},-0.00095)%
				(\OTuse{t2.v},-0.000525)%
				(\OTuse{t3.v}, -0.0002)} node[below,pos=0.7,rotate=12] {$\approx$ linear};
		\end{axis}
		\begin{axis}[UgraphSub]
			\OTread{dtab.v}
			\Uplotvalidsub{}
		\end{axis}
	\end{tikzpicture}
	\fontfamily{cmr}\selectfont%
	\vspace*{1em}
	\caption{\UtsAirName{} \textendash{} primary wave, $D = 50$ mm. \Ucapvalidpangra{}}
	\label{fig:validate_air_d50}
\end{figure}

% figure, air, D = 70mm, channel 1, ensemble average and deviation to ensemble average of 40 signals
\OTsetpfx{oct2tex.air_d70_v800_P}
\begin{figure}[htbp]
	\centering\fontfamily{cmss}\selectfont
	\begin{tikzpicture}
		\def\ydm{0.00125}
		\begin{axis}[UgraphMain,ymin=-\ydm,ymax=\ydm]
			\OTread{stab.v}
			\Uplotvalidmain{}
			\addplot[markerline2] coordinates {%
				(\OTuse{t1.v},-0.00090)%
				(\OTuse{t2.v},-0.00050)%
				(\OTuse{t3.v}, -0.00010)} node[below,pos=0.7,rotate=12] {$\approx$ linear};
		\end{axis}
		\def\yds{0.000125}
		\begin{axis}[UgraphSub,ymin=-\yds,ymax=\yds]
			\OTread{dtab.v}
			\Uplotvalidsub{}
		\end{axis}
	\end{tikzpicture}
	\fontfamily{cmr}\selectfont%
	\vspace*{1em}
	\caption{\UtsAirName{} \textendash{} primary wave, $D = 70$ mm. \Ucapvalidpangra{}}
	\label{fig:validate_air_d70}
\end{figure}

% figure, water, D = 25mm, channel 1, ensemble average and deviation to ensemble average of 40 signals
\OTsetpfx{oct2tex.water_d25_v800_P}
\begin{figure}[htbp]
	\centering\fontfamily{cmss}\selectfont
	\begin{tikzpicture}
		\begin{axis}[UgraphMain]
			\OTread{stab.v}
			\Uplotvalidmain{}
		\end{axis}
		\begin{axis}[UgraphSub]
			\OTread{dtab.v}
			\Uplotvalidsub{}
		\end{axis}
	\end{tikzpicture}
	\fontfamily{cmr}\selectfont%
	\vspace*{1em}
	\caption{\UtsWaterName{} \textendash{} primary wave, $D = 25$ mm. \Ucapvalidpangra{}}
	\label{fig:validate_water_d25}
\end{figure}

% figure, water, D = 50mm, channel 1, ensemble average and deviation to ensemble average of 40 signals
\OTsetpfx{oct2tex.water_d50_v800_P}
\begin{figure}[htbp]
	\centering\fontfamily{cmss}\selectfont
	\begin{tikzpicture}
		\begin{axis}[UgraphMain]
			\OTread{stab.v}
			\Uplotvalidmain{}
		\end{axis}
		\begin{axis}[UgraphSub]
			\OTread{dtab.v}
			\Uplotvalidsub{}
		\end{axis}
	\end{tikzpicture}
	\fontfamily{cmr}\selectfont%
	\vspace*{1em}
	\caption{\UtsWaterName{} \textendash{} primary wave, $D = 50$ mm. \Ucapvalidpangra{}}
	\label{fig:validate_water_d50}
\end{figure}

% figure, water, D = 70mm, channel 1, ensemble average and deviation to ensemble average of 40 signals
\OTsetpfx{oct2tex.water_d70_v800_P}
\begin{figure}[htbp]
	\centering\fontfamily{cmss}\selectfont
	\begin{tikzpicture}
		\begin{axis}[UgraphMain]
			\OTread{stab.v}
			\Uplotvalidmain{}
		\end{axis}
		\begin{axis}[UgraphSub]
			\OTread{dtab.v}
			\Uplotvalidsub{}
		\end{axis}
	\end{tikzpicture}
	\fontfamily{cmr}\selectfont%
	\vspace*{1em}
	\caption{\UtsWaterName{} \textendash{} primary wave, $D = 70$ mm. \Ucapvalidpangra{}}
	\label{fig:validate_water_d70}
\end{figure}

% figure, aluminum cylinder, D = 50mm, channel 1, ensemble average and deviation to ensemble average of 40 signals
\OTsetpfx{oct2tex.alucyl_d50_v800_P}
\begin{figure}[htbp]
	\centering\fontfamily{cmss}\selectfont
	\begin{tikzpicture}
		\begin{axis}[UgraphMain]
			\OTread{stab.v}
			\Uplotvalidmain{}
		\end{axis}
		\begin{axis}[UgraphSub]
			\OTread{dtab.v}
			\Uplotvalidsub{}
		\end{axis}
	\end{tikzpicture}
	\fontfamily{cmr}\selectfont%
	\vspace*{1em}
	\caption{\UtsAlucylName{} \textendash{} primary wave, $D = 50$ mm. \Ucapvalidpangra{}}
	\label{fig:validate_alucyl_pri_d50}
\end{figure}

% figure, aluminum cylinder, D = 50mm, channel 2, ensemble average and deviation to ensemble average of 40 signals
\OTsetpfx{oct2tex.alucyl_d50_v800_S}
\begin{figure}[htbp]
	\centering\fontfamily{cmss}\selectfont
	\begin{tikzpicture}
		\begin{axis}[UgraphMain]
			\OTread{stab.v}
			\Uplotvalidmain{}
		\end{axis}
		\begin{axis}[UgraphSub]
			\OTread{dtab.v}
			\Uplotvalidsub{}
		\end{axis}
	\end{tikzpicture}
	\fontfamily{cmr}\selectfont%
	\vspace*{1em}
	\caption{\UtsAlucylName{} \textendash{} secondary wave, $D = 50$ mm. \Ucapvalidpangra{}}
	\label{fig:validate_alucyl_sec_d50}
\end{figure}

%###############################################################################
% Usage Notes (optional)
\section{Usage Notes}\label{sec:usage_notes}

%In diesem Abschnitt wird die Verwendung der zur Verfügung gestellten Daten beschrieben. Die Beschreibungen beziehen sich dabei auf die kompilierten Datensätze im binären Dateiformat von \UOct{}. Nachfolgend wird erläutert, wie man die Datensätze aus den komprimierten TAR Archiven extrahiert, auf die Datenstruktur in den Datensätzen zugreift, Signaldaten exportiert und visualisiert. Am Ende dieses Abschnitts findet sich eine Anleitung zur Verwendung des Progammcodes, mit dem die Ergebnisse in \Usecref{sec:technical_validation} reproduziert werden können.
%
This section describes how to access the data records' content and to use the included binary datasets beneficially. The following explains how to extract the datasets from the data records' compressed TAR archives, access the data structure in the datasets, and export and visualize signal data. The end of this section provides instructions to reproduce the analysis results illustrated in \Usecref{sec:technical_validation}. The descriptions below refer to the software provided by the author of this study (see \Usecref{sec:code_availability}) but also to freely available open-source software.

\paragraph{Extracting datasets from compressed TAR archives:}
%Die Datensätze aller referenzierten Testserien liegen nach dem Download als komprimierte TAR Archive vor. Um Zugriff auf darin enthaltenen die Datensätze zu erlangen, müssen diese zuerst aus den Archiven extrahiert werden. Unter Linux steht dafür das Befehlszeilenprogramm `tar'\autocite{tar} zur Verfügung. Folgendes Befehlszeilenkommando extrahiert die Datensätze aus den TAR Archiven in den Ordner `ts1\_datasets'.
%
After downloading the data records from the repository, the datasets are available in compressed TAR archives. To access the contained datasets, extract them from the archives first. Under Linux, the command line tool GNU tar is the simplest option. The following command decompresses and extracts the datasets from the TAR archives into the folder `ts1\_dataset' using the GNU bash\autocite{bash} command line interface.

\begin{verbatim}
	$ tar -xzf ts1_dataset.tar.xz
\end{verbatim}

\paragraph{Accessing the data in a data set:}
%Da die Datensätze im binären Dateiformat von \UOct{} vorliegen, ist der Zugriff mit diesem Programm einfach zu bewerkstelligen. In der \UOct{} Befehlszeilenumgebung kann mit den nachfolgenden Befehlen auf die Elemente der hierarchische Datenstruktur in den Datensätzen zugegriffen werden:
%
Since the datasets were written in the binary file format of \UOct{}, accessing them with this program is the most convenient option. Access to the structure elements' data is possible using the following commands on the \UOct{} command line interface. Please note that lines beginning with a \#\textendash{}sign contain a comment which refers to the subsequent line.

\begin{verbatim}
	>> # Load dataset and assign entire structure to variable ds
	>> ds = load('/path/to/dataset/file.oct', 'dataset').dataset;
	>> # Assign the data of signal 12 from channel 1 to array s
	>> s = ds.tst.s06.d13.v(:,12);
	>> # Assign measurement unit of the signal data to variable u
	>> u = ds.tst.s06.d13.u;
\end{verbatim}

%Eine vollständige Beschreibung aller Elemente der Datenstruktur findet sich in \Usecref{sec:data_records}. Eine allgemeine Dokumentation zur Verwendung von Datenstrukturen in \UOct{} ist auch Online\autocite{octstruct} verfügbar.
%
\noindent Please see \Usecref{sec:data_records} for an elaborate description of all structure elements. A general introduction\autocite{octstruct} on using structures in \UOct{} is also available online.

\paragraph{Extracting data from a data set:}
%Die Nutzung der Messdaten und Metadaten ist nicht auf \UOct{} beschränkt. Um die Datensätze auch in anderen Programmen nutzen zu können, müssen diese erst in ein anderes Dateiformat konvertiert werden. Dafür wird die Skript-Sammlung \UswDsexportName{} (siehe auch \Usecref{sec:code_availability}) zur Verfügung gestellt.
%Hier wird anhand von einigen Beispielen gezeigt, wie man das Programm initialisiert, Ultraschall-Signaldaten und Temperaturdaten als CSV-Datei exportiert und Metadaten in das JSON-Strukturformat oder in eine \LaTeX{}-Textdatei umwandelt.
%
The access to the datasets' measurement data and metadata is not limited to \UOct{}. To use the data stored in the datasets in other programs, they must be converted to other common file formats first. For this purpose, the script collection \UswDsexportName{}\autocite{dsexporterv1.1} is provided.
The following examples show how to initialize that program, export ultrasound signal data and specimen temperature data as a comma-separated value file (CSV), and to convert the metadata into the JSON structure format or the \LaTeX{} format. Please note, that the function `init()' must be called once before executing the other commands.

\begin{verbatim}
	>> # (1) Initialize program 'Dataset Exporter'
	>> init();
	>> # (2) Load export settings into variable ES
	>> ES = dsexporter_settings();
	>> # (3) Define the output directory path ODP
	>> ODP = '/path/to/output/directory';
	>> # (4) Define the data set file path IFP
	>> IFP = '/path/to/dataset/dataset.oct';
	>> # (5) Export signal 10 from channel 1 to CSV file
	>> dsexporter_sig2csv(ES, ODP, IFP, 1, 10);
	>> # (6) Export specimen temperature data to a CSV file
	>> dsexporter_tem2csv(ES, ODP, IFP, 1);
	>> # (7) Export data set metadata to a JSON file
	>> dsexporter_substruct2json(ES, ODP, IFP, 'meta_set');
	>> # (8) Export data set metadata to a LaTeX file
	>> dsexporter_substruct2tex(ES, ODP, IFP, 'meta_set');
\end{verbatim}

\paragraph{Visualizing data from a data set:}
%Die in den Datensätzen enthaltenen Signaldaten und Temperaturdaten können mit der Skript-Sammlung `Data set viewer' (siehe auch \Usecref{sec:code_availability}) auch gleich visualisiert werden. Anhand von Beispielen wird gezeigt, wie man das Programm initialisiert, Signaldaten und Temperaturdaten plottet und eine Serie von Ultraschall-Signalen in eine MP4 Videodatei rendert.
%
Data visualization is one of the most important tasks in signal analysis. To simplify that task, the script collection \UswDsviewName{}\autocite{dsviewerv1.0} is provided. The following examples show how to initialize the program, plot signal and temperature data, and render a sequence of ultrasound signals into an MP4 video file.

\begin{verbatim}
	>> # (1) initialize program 'Dataset Viewer'
	>> init();
	>> # (2) load display settings
	>> VS = dsviewer_settings();
	>> # (3) define data set input file path
	>> IFP = '/path/to/dataset/dataset.oct';
	>> # (4) define temporary directory to create MP4 videos
	>> TMP = '/path/to/temp';
	>> # (4) display signal 100 from channel 1, 2D plot
	>> dsviewer_2d(IFP, VS, 1, 100);
	>> # (5) plot all signals from channel 1, 3D plot
	>> dsviewer_3d(IFP, VS, 1);
	>> # (6) render MP4 video of all signals in data set
	>> dsviewer_mp4(IFP, TMP, VS);
	>> # (7) display temperature data from channel 1
	>> dsviewer_tem(IFP, VS, 1);
\end{verbatim}

\paragraph{Converting datasets to MatLAB's binary file format:}
%Eine anderes, sehr weit verbreitetes numerisches Rechenprogramm, ist MatLAB\autocite{matlab}. Um die Datensätze auch dort nutzen zu können ist eine Umwandlung in das binäre Dateiformat von MatLAB erforderlich. Das nachfolgende Beispiel zeigt, wie das in der Befehlszeilenumgebung von \UOct{} zu bewerkstelligen ist.
%
Another widely used numerical computation program is MatLAB\autocite{matlab}. To use the datasets in MatLAB, it is necessary to convert the datasets into MatLAB's binary file format first. The following example shows how to do this conversion using the \UOct{} command line interface.

\begin{verbatim}
	>> # load dataset (GNU Octave's binary format)
	>> ds = load('/path/to/dataset.oct', 'dataset').dataset;
	>> # convert dataset to the MatLAB binary file format, version 6
	>> save('-v6', 'dataset_matlabv6.mat', 'ds');
	>> # convert dataset to the MatLAB binary file format, version 7
	>> save('-v7', 'dataset_matlabv7.mat', 'ds');
\end{verbatim}

\paragraph{Reproducing the analysis results:}
%Die in \Usecref{sec:technical_validation} gezeigten Analyseergebnisse wurden mittels \UOct{} Befehlskripts\autocite{analysiscode} (siehe auch \Usecref{sec:code_availability}) aus den Signaldaten der Referenztests (siehe auch \Usecref{sec:data_records}) berechnet. Dafür müssen zuerst die Datensätze der Referenztests und die Befehlsskripts heruntergeladen und aus den komprimierten Archiven extrahiert werden. Zudem sind die Variablen `r\_ds.paths.dssrc', `r\_ds.paths.ts5oct', `r\_ds.paths.ts6oct' und `r\_ds.paths.ts7oct' in der Funktionsdatei `anadp\_param.m' so anzupassen, dass diese auf die Ordner zeigen, in denen sich kompilierten Datensätze befinden.
%Mit den nachfolgend aufgelisteten Befehlen ist es anschließend möglich die Analyseergebnisse aus den Signaldaten der Referenztests zu reproduzieren.
%
The analysis results shown in \Usecref{sec:technical_validation} were compiled using \UOct{} command scripts.
First, download the TAR archives of \UtsAirShort{}\autocite{dataair}, \UtsWaterShort{}\autocite{datawater} and \UtsAlucylShort{}\autocite{dataalucyl} from the repository and extract the datasets from the archives as described above.
Second, download the command script archive\autocite{analysiscode} from the repository and extract the files from the archive into a working directory. See also \Usecref{sec:code_availability}.
Third, adjust the variables `r\_ds.paths.dssrc', `r\_ds.paths.ts5oct', `r\_ds.paths.ts6oct' and `r\_ds.paths.ts7oct' in function file `anadd\_param.m' such that they point to the folders containing the previously extracted datasets (*.oct) as shown in the example below.

\begin{verbatim}
	# full path, parent dirctory of the subdirectories
	# 'ts5_datasets', 'ts6_datasets', 'ts7_datasets'
	r\_ds.paths.dssrc = /home/acme/science/data;
	# test series 5 *.oct files, subdirectory name
	r\_ds.paths.ts5oct = 'ts5_datasets';
	# test series 6 *.oct files, subdirectory name
	r\_ds.paths.ts5oct = 'ts6_datasets';
	# test series 7 *.oct files, subdirectory name
	r\_ds.paths.ts5oct = 'ts7_datasets';
\end{verbatim}

\noindent Finally, the commands listed below allow to reproduce the analysis results from the reference tests' datasets using the \UOct{} command line interface.

\begin{verbatim}
	>> # initialize program
	>> anadd_init();
	>> # compile results and export them to LaTeX text files
	>> anadd_analyse();
\end{verbatim}

%###############################################################################
% Code Availability
\section{Code Availability}\label{sec:code_availability}
%Alle hier referenzierten Datensätze wurden aus den Rohdaten, bestehend aus Textdateien, mittels Befehlsskripts in das binäre Dateiformat von \UOct{} umgewandelt. Da die Datensätze bereits im binären Format vorliegen, dient diese Skript-Sammlung lediglich dazu, den Vorgang des Kompilierens im Detail nachvollziehen zu können.
%
All datasets referenced in this work were compiled from the raw data, consisting of text files, into the binary file format of \UOct{} using command scripts. Therefore, compiling the datasets is not necessary. Nevertheless, those scripts help to comprehend the details of the compilation process.

%Zwei weitere Skript-Sammlungen sind verfügbar, die den Zugriff auf die kompilierten Datensätze vereinfachen und die Visualisierung der darin enthaltenen Signaldaten erleichtern. Außerdem wird jene Skript-Sammlung zur verfügung gestellt, mit der die Analyseergebnisse in \Usecref{sec:technical_validation} berechnet wurden und reproduziert werden können.
%
Further script collections are provided that simplify access to the binary datasets and make it easier to visualize the signal data therein. In addition, the script collection used to compile and reproduce the analysis results presented in \Usecref{sec:technical_validation} is supplied.

%Alle hier referenzierten Skript-Sammlungen wurden mit \UOct{} am Betriebssystem `Debian 11'\autocite{debian} implementiert und getestet. Um die Erweiterbarkeit der Befehlsskripts und deren nachhaltige Nutzung zu unterstützen, wurde der zur Verfügung gestellte Programmcode unter der `MIT' Lizenz\autocite{licmit} lizenziert und am Repositorium\autocite{repotug} der technischen Universität Graz zur Verfügung gestellt. In \Usecref{sec:usage_notes} finden sich einige Anwendungsbeispiele zu diesen Skript-Sammlungen.
%
All script collections listed below were implemented and tested with \UOct{} on the Debian~11\autocite{debian} (Linux) operating system. For extensibility and sustainable use, the program code provided is licensed under the MIT\autocite{licmit} license and made available on the repository\autocite{repotug} of Graz University of Technology. Usage examples for that script collections, please find in \Usecref{sec:usage_notes}.

%\begin{itemize}
%	\item \UswDscompName{}\autocite{dscompv1.2} ist ein Werkzeug zum Kompilieren der Rohdaten zu binären Datensätzen mit hierarchischer Datenstruktur. Dieses Werkzeug beinhaltet neben den Befehlsskripts auch die Metadaten-Datenbanken. 
%	\item \UswDsexportName{}\autocite{dsexporterv1.1} ist ein Werkzeug zum Exportieren von Daten aus den binären Datensätzen. Folgende Dateiformate werden unterstützt: (1) Komma-separiertes Textformat; (2) das JSON-Strukturformat und (3) das Textformat von \LaTeX{}.
%	\item \UswDsviewName{}\autocite{dsviewerv1.0} ist ein Werkzeug zum Visualisieren von Daten aus den binären Datensätzen. Folgende Funktionen werden unterstützt: (1) 2D Plots von Ultraschall-Signaldaten; (2) 2D Plots der Temperaturdaten der Probekörper; (3) 3D Plots von Reihen von Ultraschall-Signaldaten und (4) deren Darstellung als Video im MP4 Format.
%	\item Skript-Sammlung\autocite{analysiscode} zur Berechnung der Analyseergebnisse für die technische Validierung.
%\end{itemize}
%
\begin{itemize}
	\item \UswDscompName{}\autocite{dscompv1.2} is a tool for compiling the raw data into binary datasets with a hierarchical data structure. In addition, this tool also contains the metadata databases used in the data set compilation process.
	%
	\item \UswDsexportName{}\autocite{dsexporterv1.1} is a tool for exporting data from the binary datasets. The following file formats are supported: (1) comma-separated text format, (2) the JSON structure format, and (3) the text format of \LaTeX{}.
	%
	\item \UswDsviewName{}\autocite{dsviewerv1.0} is a tool for visualizing data from the binary datasets. The following functions are supported: (1) 2D plots of ultrasonic signal data; (2) 2D plots of the temperature data of the specimens; (3) 3D plots of ultrasound signal sequences and (4) rendering ultrasound signal sequences to the MP4 format.
	%
	\item The script collection\autocite{analysiscode} used to compile the analysis results for the technical validation.
\end{itemize}

%Um die Skript-Sammlungen nutzen zu können, werden folgende Programme benötigt:
%In order to use the script collections, it is necessary to install the following software packages.

\begin{itemize}
	\item GNU Octave\autocite{oct620}: scientific programming language.
	\item GNU tar\autocite{tar}: command line interface (CLI) tool to handle TAR archives.
	\item Gzip\autocite{gzip}: CLI tool to handle ZIP archives.
	\item ffmpeg\autocite{ffmpeg}: CLI tool to create and manipulate MPEG video files.
	\item shasum\autocite{sha256}: CLI tool to print or check SHA checksums. This tool is only needed to compile the binary datasets.
\end{itemize}

%Diese quelloffenen Programme stehen unter Linux, aber auch anderen Betriebssystemen zur Verfügung (z.B. Microsoft Windows oder MacOS). All jene, die Microsoft Windows verwenden, können anstelle von `tar' und `Gzip' auch das frei verfügbare Programm 7-zip\autocite{7zip} verwenden.
%
\noindent This open-source software is available for Linux and other operating systems (e.g. Microsoft Windows or MacOS). For Microsoft Windows users, using the freely available software 7-zip\autocite{7zip} is suggested instead of GNU tar and Gzip.

%###############################################################################
% Author Contributions
\section*{Authors Contributions}
%Jakob Harden entwarf die hier beschriebene experimentelle Studie, führte sämtliche Labortests durch, sammelte und bereitete alle Daten auf, kompilierte und veröffentlichte die Datensätze. Die zur Verfügung gestellten Softwarepakete (Skript-Sammlungen) wurden ebenfalls von Jakob Harden erdacht, implementiert, getestet und in Form von digitalen Objekten zur Verfügung gestellt. Darüber hinaus wurde der gesammt Inhalt dieses Manuskripts von J. Harden erdacht, entworfen and geschrieben.
%
J. Harden designed the experimental study, conducted all laboratory tests, collected and prepared the data, compiled the datasets and published the data records. The software packages (script collections) provided were also conceived, implemented, tested, and made available by J. Harden. Furthermore, the entire content of this manuscript was conceived, designed and written by J. Harden.

%###############################################################################
% Competing Interests
\section*{Competing Interests}
The authors declare no competing interests.

%###############################################################################
% Acknowledgements (optional)
\section*{Acknowledgements}
Supported by TU Graz Open Access Publishing Fund.

%###############################################################################
% References
%
\newpage
\printbibheading[title={References}]
\printbibliography[heading=subbibintoc,nottype=online,title={Articles, Books}]
\printbibliography[heading=subbibintoc,category=dataset,title={Data Records}]
\printbibliography[heading=subbibintoc,category=software,title={Available Software}]
\printbibliography[heading=subbibintoc,type=online,notcategory=dataset,notcategory=software,title={Online Materials}]

%###############################################################################
% End document
%###############################################################################
\end{document}
